{"id":3809,"date":"2012-09-18T10:22:13","date_gmt":"2012-09-18T01:22:13","guid":{"rendered":"http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/?page_id=3809"},"modified":"2016-01-14T14:53:20","modified_gmt":"2016-01-14T05:53:20","slug":"paper-list-1988%ef%bc%8d2008","status":"publish","type":"page","link":"https:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/paper-list-1988%ef%bc%8d2008\/","title":{"rendered":"Paper list"},"content":{"rendered":"<p><a href=\"http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/?page_id=3809\">Paper list<\/a> | <a href=\"http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/?page_id=3811\">Proceedings<\/a> | <a href=\"http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/?page_id=3813\">International conferences<\/a> | <a href=\"http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/?page_id=3815\">Patents <\/a><\/p>\n<div id='paper'><h4 id='Papers-2026'>2026<\/h4><div rel='#intramolecularfretcascadesenablesmallefficiencyrolloffinsolutionprocessedoleds' class='gray_back'><strong>[783] Intramolecular FRET Cascades Enable Small Efficiency Roll-off in Solution-Processed OLEDs<\/strong><br \/>Mahni Fatahi, Debasish Barman, Youichi Tsuchiya, Chihaya Adachi, Eli Zysman-Colman<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>in press<\/strong>, 2026<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#interfacialengineeringbymetallicionsandorganicammoniumligandpassivationforperovskitesolarcells' class='gray_back'><strong>[782] Interfacial Engineering by Metallic Ions and Organic Ammonium Ligand Passivation for Perovskite Solar Cells<\/strong><br \/>Abraham Adenle, Purevkham Myagmarsereejid, Selengesuren Suragtkhuu, Tuul Tsagaantooj, Solongo Purevdorj, Eric Campbell, Sina Jamali, Oisin E. Fitzgerald, Taylor J. Z. Stock, Thomas J. Macdonald, Joseph F. S. Fernando, Paul E. Shaw, Hui Jin, Michitoshi Hayashi, Munkbayar Batmunkh, Batjargal Sainbileg, Chihaya Adachi, Yu Lin Zhong, Munkbayar Batmunkh<br \/>\n<i>ADVANCED SCIENCE<\/i>, e20257, 2026<br \/>DOI: <a href=' https:\/\/doi.org\/10.1002\/advs.202520257Digital Object Identifier (DOI)' target='_blank'> https:\/\/doi.org\/10.1002\/advs.202520257Digital Object Identifier (DOI)<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#19740' class='gray_back'><strong>[781] <\/strong><br \/>Gerardus N. Iswara Lestanto, Shunta Kakumachi, Youichi Tsuchiya, Hajime Nakanotani, Chin-Yiu Chan, Chihaya Adachi<br \/>\n<i>ACS Applied Materials & Interfaces<\/i>, <strong>18<\/strong>, 5, 8485 - 8492, 2026<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsami.5c19743' target='_blank'>https:\/\/doi.org\/10.1021\/acsami.5c19743<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#discoveryoftunableandsolubleorganicemittersforsolidstatelaserswithaselfdrivinglaboratory' class='gray_back'><strong>[780] Discovery of tunable and soluble organic emitters for solid-state lasers with a self-driving laboratory<\/strong><br \/>Hyun Suk Park, Mahdi Mazaheri, Changhyeok Choi, Han Hao, Davide Avagliano, Elic Isbrandt, Buddhika S. B. Karunathilaka, Chihaya Adachi, Alan Aspuru-Guzik<br \/>\n<i>Nature Communications<\/i>, <strong>17<\/strong>, 2920, 2026<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-026-69233-2' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-026-69233-2<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#deuterationeffectonexciplexdynamicsinorganicdonoracceptorblends' class='gray_back'><strong>[779] Deuteration Effect on Exciplex Dynamics in Organic Donor\u2013Acceptor Blends<\/strong><br \/>Yuto Nagasaki, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Journal of Materials Chemistry C<\/i>, <strong>14<\/strong>, 10, 2026<br \/>DOI: <a href='DOI\thttps:\/\/doi.org\/10.1039\/D5TC04017E' target='_blank'>DOI\thttps:\/\/doi.org\/10.1039\/D5TC04017E<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#appliedphysicsexpressthejapansocietyofappliedphysicsfindoutmoreletterthefollowingarticleisopenaccesscomprehensivekineticanalysisofinverteds1t1materials' class='gray_back'><strong>[778] Comprehensive kinetic analysis of inverted S1\u2013T1 materials with a dynamic exciton model<\/strong><br \/>Hyunje Jung, Youichi Tsuchiya, Changfeng Si, Shoma Sasaki, Zachary M. Hudson, Chihaya Adachi<br \/>\n<i>Applied Physics Express<\/i>, <strong>19<\/strong>, 021008, 2026<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.35848\/1882-0786\/ae3f74' target='_blank'>http:\/\/dx.doi.org\/10.35848\/1882-0786\/ae3f74<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientuvorganicsolid%e2%80%90statelaserswithultra%e2%80%90shortwavelengthsbasedondispirofluorene%e2%80%90indenofluoreneisomers' class='gray_back'><strong>[777] Efficient UV Organic Solid\u2010State Lasers with Ultra\u2010Short Wavelengths Based on Dispirofluorene\u2010Indenofluorene Isomers<\/strong><br \/>Yusei Kaya, Hyung Suk Kim, Denis Ari, Kevin Mall Haidaraly, Isabelle Hantonne, Buddhika S. B. Karunathilaka, Ayano Abe, Youhei Chitose, Sebastien Forget, Cyril Poreil, Fabrice Mathevet, Chihaya Adachi<br \/>\n<i>Advanced Functional Materials<\/i>, <strong>36<\/strong>, 11, e14060, 2026<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adfm.202514060 ' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adfm.202514060 <\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#outsidefrontcovercomplementarymultiresonancethermallyactivateddelayedfluorescencedesignforblueoledsbeyondtheconcentrationlimit' class='gray_back'><strong>[776] Outside Front Cover: Complementary Multi-Resonance Thermally Activated Delayed Fluorescence Design for Blue OLEDs Beyond the Concentration Limit<\/strong><br \/>Chanhee Lee, Hyung Suk Kim, Dahee Boo, Heewon Woo, Youichi Tsuchiya , Sae Youn Lee, Chihaya Adachi<br \/>\n<i>Angewandte Chemie International Edition<\/i>, e2026-m052500, 2026<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.2026-m1401052500' target='_blank'>https:\/\/doi.org\/10.1002\/anie.2026-m1401052500<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#exciplexenabledhighefficiencyfullystretchableoleds' class='gray_back'><strong>[774] Exciplex-enabled high-efficiency, fully stretchable OLEDs<\/strong><br \/>Huanyu Zhou et al., Youichi Tsuchiya, Chihaya Adachi, Yury Gogotsi, Tae-Woo Lee<br \/>\n<i>Nature<\/i>, <strong>649<\/strong>, 604 - 644, 2026<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41586-025-09904-0' target='_blank'>https:\/\/doi.org\/10.1038\/s41586-025-09904-0<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#regioisomericeffectofdibenzofuranbasedhostmaterialsonphotophysicsanddeviceperformanceinorganiclightemittingdiodes' class='gray_back'><strong>[773] Regio-isomeric effect of dibenzofuran-based host materials on photophysics and device performance in organic light-emitting diodes<\/strong><br \/>Yanmei Hu, Yufang Li, Chin-Yiu Chan, Youichi Tsuchiya, Chihaya Adachi<br \/>\n<i>Chemistry Letters<\/i>, <strong>55<\/strong>, 1, upaf235, 2026<br \/>DOI: <a href='https:\/\/doi.org\/10.1093\/chemle\/upaf235' target='_blank'>https:\/\/doi.org\/10.1093\/chemle\/upaf235<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#experimentalinvestigationofexcitondynamicsofthermallyactivateddelayedfluorescencematerialexhibitingmonoexponentialtransientpldecaywithsubmicrosecondlifetimeinsolution' class='gray_back'><strong>[772] Experimental investigation of exciton dynamics of thermally activated delayed fluorescence material exhibiting mono-exponential transient PL decay with sub-microsecond lifetime in solution<\/strong><br \/>Shoma Sasaki, Wen-Hao Zhang, Youichi Tsuchiya, Debasish Barman, Chih-Hsin Chen, Chihaya Adachi<br \/>\n<i>Applied Physics Express <\/i>, <strong>19<\/strong>, 011002, 2026<br \/>DOI: <a href='https:\/\/doi.org\/10.35848\/1882-0786\/ae3427' target='_blank'>https:\/\/doi.org\/10.35848\/1882-0786\/ae3427<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2025'>2025<\/h4><div rel='#chargetransportbehavioratdonoracceptorinterfaceaimedathighelectricalconductivitywithsuppressedactivationenergy' class='gray_back'><strong>[771] Charge transport behavior at donor\/acceptor interface aimed at high electrical conductivity with suppressed activation energy<\/strong><br \/>Kentaro Imaoka, Kaito Akizuki, Mana Kameyama, Fabrice Mathevet, Chihaya Adachi<br \/>\n<i>AIP Advanced<\/i>, <strong>15<\/strong>, 085023, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/5.0281837' target='_blank'>https:\/\/doi.org\/10.1063\/5.0281837<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#substituentmodificationtopreventdexterenergytransferforstablehyperfluorescentorganiclightemittingdiodes' class='gray_back'><strong>[770] Substituent modification to prevent Dexter energy transfer for stable hyperfluorescent organic light-emitting diodes<\/strong><br \/>Chanhee Lee, Youichi Tsuchiya, Sae Youn Lee, Chihaya Adachi<br \/>\n<i>Chemistry Letters<\/i>, <strong>55<\/strong>, 1, upaf240, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1093\/chemle\/upaf240' target='_blank'>https:\/\/doi.org\/10.1093\/chemle\/upaf240<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#effectofshieldingsubstituentsonperformanceofbluethermallyactivateddelayedfluorescentmolecules' class='gray_back'><strong>[769] Effect of Shielding Substituents on Performance of Blue Thermally Activated Delayed Fluorescent Molecules<\/strong><br \/>Gerardus N. Iswara Lestanto, Debasish Barman, Hajime Nakanotani, Chin-Yiu Chan, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>13<\/strong>, 29, e02091, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202502091Digital Object Identifier (DOI)' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202502091Digital Object Identifier (DOI)<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#biphenylmodifiedbenzobisoxazolederivativeswithreducedconcentrationquenchingandlowamplifiedspontaneousemissionthresholdsfororganicsemiconductorlasers' class='gray_back'><strong>[768] Biphenyl-Modified Benzobisoxazole Derivatives with Reduced Concentration Quenching and Low Amplified Spontaneous Emission Thresholds for Organic Semiconductor Lasers<\/strong><br \/>Keigo Ishii, Kenichi Goushi, Chihaya Adachi<br \/>\n<i>ACS Applied Materials & Interfaces<\/i>, <strong>17<\/strong>, 48, 65793 - 65800, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsami.5c19611' target='_blank'>https:\/\/doi.org\/10.1021\/acsami.5c19611<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#alkylammoniumligandsdrivenperovskitelatticeengineeringforwhiteperovskitenanocrystalssingleemitters' class='gray_back'><strong>[767] Alkylammonium ligands-driven perovskite lattice engineering for white perovskite nanocrystals single emitters<\/strong><br \/>Jean-S\u00e9bastien B\u00e9nas , Zhen-Li Yan, Wei-Cheng Chen, Chu-Chen Chueh, Jing-Yan Wu, Wei-Wen Chen, Fang-Cheng Liang, Erdi Akman, Yu-Jung Lu, Yen-Yu Wang, Ja-Hon Lin, Ye-Zhou, Chihaya Adachi, Chi-Ching Kuo<br \/>\n<i>Chemical Engineering Journal<\/i>, <strong>526<\/strong>, 15, 170961, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.cej.2025.170961' target='_blank'>https:\/\/doi.org\/10.1016\/j.cej.2025.170961<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#flexiblemechanicalresponsedevicewithopticallogicemissionenabledbysynergisticcrystallizationengineeringofesterpolymerandperovskite' class='gray_back'><strong>[766] Flexible Mechanical Response Device With Optical Logic Emission Enabled by Synergistic Crystallization Engineering of Ester Polymer and Perovskite<\/strong><br \/>Zhen-Li Yan, Tzu-Ming Hsu, Chien-Hsin Wu, Jean-Sebastien Benas, Ying-Chi Huang, Wei-Cheng Chen, Bi-Hsuan Lin, Ja-Hon Lin, Hsinhan Tsai, Chu-Chueh, Chihaya Adachi<br \/>\n<i>Advanced Science<\/i>, <strong>12<\/strong>, 43, e08812, 2025<br \/>DOI: <a href='https:\/\/advanced.onlinelibrary.wiley.com\/doi\/10.1002\/advs.202508812' target='_blank'>https:\/\/advanced.onlinelibrary.wiley.com\/doi\/10.1002\/advs.202508812<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#achievingsmallsinglettripletenergygapsinpolycyclicheteroaromaticemitters' class='gray_back'><strong>[765] Achieving small singlet\u2013triplet energy gaps in polycyclic heteroaromatic emitters<\/strong><br \/>Rajat Walla, Xin Xiong, Xiao-Chun Fan, Ting-Feng Chen, Hui Wang, Kai Wang, Yi-Zhong Shi, Xun Tang, Jean-Luc Bredas, Chihaya Adachi, Xian-Kai Chen, Xiao-Hong Zhang<br \/>\n<i>Nature Materials<\/i>, <strong>24<\/strong>, 1576 - 1583 , 2025<br \/>DOI: <a href='https:\/\/www.nature.com\/articles\/s41563-025-02309-4' target='_blank'>https:\/\/www.nature.com\/articles\/s41563-025-02309-4<\/a><br \/>[7]:Number of citation (at 20260108)<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#dominantparametersaffectingdevicedurabilityforbluetadfmolecules' class='gray_back'><strong>[764] Dominant Parameters Affecting Device Durability for Blue TADF Molecules<\/strong><br \/>Masashi Mamada, Thanh Ba Nguyen, Hajime Nakanotani, Takuji Hatakeyama,  Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>e00971<\/strong>, 2025<br \/>DOI: <a href='https:\/\/advanced.onlinelibrary.wiley.com\/doi\/10.1002\/adom.202500971' target='_blank'>https:\/\/advanced.onlinelibrary.wiley.com\/doi\/10.1002\/adom.202500971<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#commonmechanismofdualemissioninlinearlylinkeddonoracceptortypethermallyactivateddelayedfluorescencemolecules' class='gray_back'><strong>[763] Common mechanism of dual emission in linearly-linked donor-acceptor-type thermally activated delayed fluorescence molecules<\/strong><br \/>Tomohiro Ryu,  Arvydas Ruseckas, Masaki Saigo, Kiyoshi Miyata, Youichi Tsuchiya, Hajime Nakanotani, Chihaya Adachi, Ifor D.W. Samuel, Ken Onda<br \/>\n<i>Physical Chemistry Chemical Physics<\/i>, <strong>25<\/strong>, 2025<br \/>DOI: <a href='https:\/\/pubs.rsc.org\/en\/content\/articlelanding\/2025\/cp\/d5cp01226k' target='_blank'>https:\/\/pubs.rsc.org\/en\/content\/articlelanding\/2025\/cp\/d5cp01226k<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#achievinghighlyefficientluminescenceandmultiphotonabsorptioncharacterinthermallyactivateddelayedfluorescenceemittersbasedonatetrabenzoacphenazinecore' class='gray_back'><strong>[762] Achieving Highly Efficient Luminescence and Multi-Photon Absorption Character in Thermally Activated Delayed Fluorescence Emitters Based on a Tetrabenzo[a,c]phenazine Core<\/strong><br \/>Gomathi Vinayakam Mageswari,  Youhei Chitose,  Yu-Ming Li, Zhe-Wei Fan,  Yun-Yi Kao,  Umamahesh Balijapalli, Ja-Hon Lin, Tzu-Chau Lin, Chihaya Adachi<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>e202509348<\/strong>, 2025<br \/>DOI: <a href='https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/anie.202509348' target='_blank'>https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/anie.202509348<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#stablenarrowbandblueoledsbymodulatingfrontiermolecularorbitallevels' class='gray_back'><strong>[761] Stable narrowband blue OLEDs by modulating frontier molecular orbital levels<\/strong><br \/>Xiao-Chun Fan, Xun Tang, Tong-Yuan Zhang, Shintaro Kohata, Jia Yu, Xian-Kai Chen,  Kai Wang, Takuji Hatakeyama,  Chihaya Adachi<br \/>\n<i>Nature Communications<\/i>, <strong>16<\/strong>, 4936, 2025<br \/>DOI: <a href='https:\/\/www.nature.com\/articles\/s41467-025-60172-y' target='_blank'>https:\/\/www.nature.com\/articles\/s41467-025-60172-y<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#horizontallyorientedmrcttypetadfemitterachievingeqeover40forskyblueoled' class='gray_back'><strong>[760] Horizontally oriented MRCT-type TADF emitter achieving EQE over 40% for Sky-Blue OLED<\/strong><br \/>Debasish Barman, Youichi Tsuchiya, Chihaya Adachi<br \/>\n<i>Nature Communications<\/i>, <strong>16<\/strong>, 5023, 2025<br \/>DOI: <a href='https:\/\/www.nature.com\/articles\/s41467-025-59893-x' target='_blank'>https:\/\/www.nature.com\/articles\/s41467-025-59893-x<\/a><br \/>[25]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#temperaturedependencyofenergyshiftofexcitonicstatesinadonoracceptortypetadfmolecule' class='gray_back'><strong>[759] Temperature dependency of energy shift of excitonic states in a donor\u2013acceptor type TADF molecule<\/strong><br \/>Youichi Tsuchiya, Keito Mizukoshi, Masaki Saigo, Tomohiro Ryu,  Keiko Kusuhara, Kiyosi Miyata, Ken Onda, Chihaya Adachi<br \/>\n<i>Nature Communications<\/i>, <strong>16<\/strong>, 4815, 2025<br \/>DOI: <a href='https:\/\/www.nature.com\/articles\/s41467-025-59910-z' target='_blank'>https:\/\/www.nature.com\/articles\/s41467-025-59910-z<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowthresholdamplifiedspontaneousemissionofbenzobisoxazolederivativesinadopedfilm' class='gray_back'><strong>[758] Low-Threshold Amplified Spontaneous Emission of Benzobisoxazole Derivatives in a Doped Film<\/strong><br \/>Kenichi Goushi, Masahiro Nagano, Chihaya Adachi<br \/>\n<i>ACS Materials Letters<\/i>, <strong>7<\/strong>, 2360 - 2365, 2025<br \/>DOI: <a href='https:\/\/pubs.acs.org\/doi\/10.1021\/acsmaterialslett.5c00496' target='_blank'>https:\/\/pubs.acs.org\/doi\/10.1021\/acsmaterialslett.5c00496<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#investigationofintramoleculartriplettriplet' class='gray_back'><strong>[757] Investigation of Intramolecular Triplet\u2013Triplet Annihilation Upconversion by Double Sensitization<\/strong><br \/>Aoi Haraguchi, Kenichi Goushi, Chihaya Adachi<br \/>\n<i>The Journal of Physical Chemistry Letters<\/i>, <strong>16<\/strong>, 20, 4828 - 5187, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpclett.5c00606' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpclett.5c00606<\/a><br \/><font color=\"red\">The Journal of Physical Chemistry\u306e\u30d5\u30ed\u30f3\u30c8\u30ab\u30d0\u30fc\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#blueorganiclongpersistentluminescenceviaupconversionfromchargetransfertolocallyexcitedsingletstate' class='gray_back'><strong>[756] Blue organic long-persistent luminescence via upconversion from charge-transfer to locally excited singlet state<\/strong><br \/>Zesen Lin\u3000, Jinting Ye, Shin Shinohara, Yuya Tanaka, Rengo Yoshioka, Chin-Yiu Chan, Yi-Ting Lee, Xun Tang, Kirill Mitrofanov, Kai Wang, Hayato Ouchi, Liliia Moshniaha, Yemineni S. L. V. Narayana, Chihaya Adachi, Ryota Kabe<br \/>\n<i>Nature Communications<\/i>, <strong>16<\/strong>, 2686, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-025-58048-2' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-025-58048-2<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#redtonearinfraredelectroluminescenceandlowthresholdamplifiedspontaneousemissionfromsolutionprocessablefluorescentdiketopyrrolopyrrolederivatives' class='gray_back'><strong>[755] Red-to-Near-Infrared Electroluminescence and Low-Threshold Amplified Spontaneous Emission from Solution-Processable Fluorescent Diketopyrrolopyrrole Derivatives<\/strong><br \/>Anthony D\u2019Al\u00e9o, Virginie Placide, Hao Ye, Matteo Fornasarig, Danillo Valverde, Eunyoung Choi, Gabriel Canard, Jeong Weon Wu, Yoann Olivier, Chihaya Adachi, Jean-Charles Ribierre <br \/>\n<i>ChemPhotoChem<\/i>, <strong>2500338<\/strong>, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202500338' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202500338<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#peripheralengineeringofmultiple%e2%80%90resonanceframeworktargetingefficientorganiclasers' class='gray_back'><strong>[754] Peripheral Engineering of Multiple\u2010Resonance Framework Targeting Efficient Organic Lasers<\/strong><br \/>Tuul Tsagaantooj, Tao Zhang, Yi-Ting Lee, Xiankai Chen, Xun Tang, Chihaya Adachi<br \/>\n<i>Angewandte Chemie<\/i>, <strong>64<\/strong>, 23, e202504652, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202504652' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202504652<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#curcuminoidderivativeswithadonoracceptordonorarchitectureanoutstandingplatformforhighlyefficientnearinfraredelectroluminescenceandamplifiedspontaneousemission' class='gray_back'><strong>[753] Curcuminoid derivatives with a donor-acceptor-donor architecture: an outstanding platform for highly-efficient near-infrared electroluminescence and amplified spontaneous emission<\/strong><br \/>Anthony D\u2019Al\u00e9o,  Xun Tang,  Dae-Hyeon Kim, Danillo Valverde, Elena Zaborova, Gabriel Canard, Arnaud Brosseau,  Lo\u00efc Mager, Gilles Clavier, Chihaya Adachi, Yoann Olivier, Jean-Charles Ribierre<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>13<\/strong>, 20, 2500338, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202500338' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202500338<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#impactofhostemitterinteractionsonlightamplificationinlaserdyes' class='gray_back'><strong>[752] Impact of Host\u2013Emitter Interactions on Light Amplification in Laser Dyes<\/strong><br \/>Masashi Mamada, Ayano Abe, Takashi Fujihara, Tatsuya Yoshida, Kenichi Goushi, Kiyoshi Miyata, Ken Onda, Chihaya Adachi<br \/>\n<i>Aggregate<\/i>, <strong>6<\/strong>, 5, e70030, 2025<br \/>DOI: <a href=' https:\/\/doi.org\/10.1002\/agt2.70030' target='_blank'> https:\/\/doi.org\/10.1002\/agt2.70030<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#blockingorbital%cf%80conjugationtoboostspinorbitcouplingincarbonylembeddedpolycyclicheteroaromaticemitter' class='gray_back'><strong>[751] Blocking Orbital \u03c0-Conjugation to Boost Spin-Orbit Coupling in Carbonyl-Embedded Polycyclic Heteroaromatic Emitter<\/strong><br \/>Rajat Walia, Xiaochun Fan, Le Mei, Weixiong Guo, Kai  Wang, Chihaya Adachi, Xian-Kai Chen, Xiao-Hong Zhang<br \/>\n<i>Angewandte Chemie<\/i>, <strong>64<\/strong>, 19, e202503371, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202503371' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202503371<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#unusualantistokesphotoluminescencefromapolymerfilmcontainingthermallyactivateddelayedfluorescentmolecules' class='gray_back'><strong>[750] Unusual anti-Stokes photoluminescence from a polymer film containing thermally activated delayed fluorescent molecules<\/strong><br \/>Miwa Kaneko, Shintaro Kohata, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Chemical Physics Letters<\/i>, <strong>869<\/strong>, 16, 142017, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.cplett.2025.142017' target='_blank'>https:\/\/doi.org\/10.1016\/j.cplett.2025.142017<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#whitelightemittingelectrochemicalcellsbasedonmetalfreetadfemitters' class='gray_back'><strong>[749] White light-emitting electrochemical cells based on metal-free TADF emitters<\/strong><br \/>Shi Tang, Youichi Tsuchiya,  Jia Wang, Chihaya Adachi, Ludvig Edman<br \/>\n<i>Nature Communications<\/i>, <strong>16<\/strong>, 653, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-025-55954-3' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-025-55954-3<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#investigationandmodulationofchargetransportpropertieswiththinfilmsofanisoindigobaseddonoracceptormolecularsemiconductor2' class='gray_back'><strong>[748] Investigation and modulation of charge transport properties with thin films of an isoindigo-based donor-acceptor molecular semiconductor<\/strong><br \/>Xiao Liu, Virginie Placide, Liang Chu, Kevin Mall Haidaraly, Lydia Sosa Vargas, Chihaya Adachi, Jeong Weon Wu, Beno\u00eet Heinrich, Emmanuelle Lacaze, Wensheng Yan*, Anthony D\u2019Al \u0301eo*, Fabrice Mathevet*<br \/>\n<i>Applied Surface Science<\/i>, <strong>686<\/strong>, 30, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.apsusc.2024.162057' target='_blank'>https:\/\/doi.org\/10.1016\/j.apsusc.2024.162057<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivateddelayedfluorescencepropertiesofthroughspacechargetransfertypeorganicmoleculedependingonsolventpolarity' class='gray_back'><strong>[747] Thermally Activated Delayed Fluorescence Properties of Through-Space Charge-Transfer-Type Organic Molecule Depending on Solvent Polarity<\/strong><br \/>Sang Hoon Lee, Morgan Auffray, Youichi Tsuchiya, Chihaya Adachi*<br \/>\n<i>Chemical Physics Letters<\/i>, <strong>861<\/strong>, 16, 2025<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.cplett.2024.141835' target='_blank'>https:\/\/doi.org\/10.1016\/j.cplett.2024.141835<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2024'>2024<\/h4><div rel='#electrontransportinsoftcrystallinethinfilmsofperylenediimidesubstitutedwithswallowtailterminalalkylchains' class='gray_back'><strong>[746] Electron Transport in Soft-Crystalline Thin Films of Perylene Diimide Substituted with Swallow-Tail Terminal Alkyl Chains<\/strong><br \/>Piotr \u015al\u0119czkowski, Yiming Xiao, Jeong Weon Wu, Chihaya Adachi, Lydia Sosa Vargas, David Kreher, Beno\u00eet Heinrich*, Jean-Charles Ribierre*, Fabrice Mathevet*<br \/>\n<i>The Journal of Physical Chemistry C<\/i>, <strong>128<\/strong>, 51, 2024<br \/>DOI: <a href='https:\/\/pubs.acs.org\/doi\/10.1021\/acs.jpcc.4c06222' target='_blank'>https:\/\/pubs.acs.org\/doi\/10.1021\/acs.jpcc.4c06222<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#advancingefficiencyindeepblueoledsexploringmachinelearningdrivenmultiresonancetadfmoleculardesign' class='gray_back'><strong>[745] Advancing Efficiency in Deep-Blue OLEDs: Exploring Machine-Learning-Driven Multi-Resonance TADF Molecular Design<\/strong><br \/>Hyung Suk Kim, Hyung Jin Cheon, Sang Hoon Lee, Junho Kim, Seunghyup Yoo, Yun-Hi Kim, Chihaya Adachi<br \/>\n<i>Science Advances<\/i>, <strong>11<\/strong>, 4, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1126\/sciadv.adr1326' target='_blank'>https:\/\/doi.org\/10.1126\/sciadv.adr1326<\/a><br \/>in press<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#regioisomereffectofpyreneonmultiresonanceemittersandtheirapplicationforhyperfluorescenceorganiclightemittingdiodes' class='gray_back'><strong>[744] Regioisomer effect of pyrene on multi-resonance emitters and their application for hyperfluorescence organic light-emitting diodes<\/strong><br \/>Chanhee Lee, Yi-Ting Lee, Chin-Yiu Chan, Chae Won Park, Sanghyun Lee, Hye In Kwon, Dahee Boo, Youichi Tsuchiya, Sae Youn Lee, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>13<\/strong>, 9, 2402862, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202402862' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202402862<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#rationalmoleculardesignforbalancedlocallyexcitedandchargetransfernaturefortwophotonabsorptionphenomenonandhighlyefficienttadfbasedoleds' class='gray_back'><strong>[743] Rational Molecular Design for Balanced Locally Excited and Charge- Transfer Nature for Two-Photon Absorption Phenomenon and Highly Efficient TADF-Based OLEDs<\/strong><br \/>Gomathi Vinayakam Mageswari, Youhei Chitose*, Youichi Tsuchiya, Chihaya Adachi*<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>64<\/strong>, 8, e202420417, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202420417' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202420417<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#antistokesemissionutilizingreverseintersystemcrossing' class='gray_back'><strong>[742] Anti-Stokes Emission Utilizing Reverse Intersystem Crossing<\/strong><br \/>Shintaro Kohata, Hajime Nakanotani, Takuya Hosokai, Takuma Yasuda, Youichi Tsuchiya, Chihaya Adachi*<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>64<\/strong>, 7, e202419323, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202419323' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202419323<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientelectroluminescencefromorganicfluorophorecontainingperovskitefilms' class='gray_back'><strong>[741] Efficient Electroluminescence from Organic Fluorophore-Containing Perovskite Films<\/strong><br \/>Toshinori Matsushima*, Chuanjiang Qin, Teng Teng, Narayanaswamy Kamatham, Lydia Sosa Vargas, David Kreher, Benoit Heinrich, Tomohiro Ishii, Shinobu Terakawa, Matthew R. Leyden, Atula S. D. Sandanayaka, Fatima Bencheikh, Kiyoshi Miyata, Ken Onda ; Yoshihiko Kanemitsu, Fabrice Mathevet* ; Chihaya Adachi*<br \/>\n<i>Advanced Materials<\/i>, <strong>36<\/strong>, 49, 2408775, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.202408775' target='_blank'>https:\/\/doi.org\/10.1002\/adma.202408775<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organicthermoelectricdeviceutilizingchargetransferinterfaceasthechargegenerationbyharvestingthermalenergy' class='gray_back'><strong>[740] Organic Thermoelectric Device Utilizing Charge Transfer Interface as the Charge Generation by Harvesting Thermal Energy<\/strong><br \/>Shun Kondo, Mana Kameyama, Kentaro Imaoka, Yoko Shimoi, Fabrice Mathevet, Takashi Fujihara, Hiroshi Goto, Hajime Nakanotani, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Nature Communications<\/i>, <strong>15<\/strong>, 8115, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-024-52047-5' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-024-52047-5<\/a><br \/><a href=\"https:\/\/www.kyushu-u.ac.jp\/ja\/researches\/view\/1145\">\u4e5d\u5dde\u5927\u5b66HP\u201d\u30cb\u30e5\u30fc\u30b9\uff1a\u7814\u7a76\u6210\u679c\u201d<\/a><font color=\"red\">\u306b\u63b2\u8f09\u3055\u308c\u3066\u3044\u307e\u3059\uff01<\/font><br>\r\n<a href=\"https:\/\/www.nature.com\/ncomms\/editorshighlights\">Editors\u2019 Highlights<\/a><font color=\"red\">\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#donoronlysubstitutedbenzeneachievesthermallyactivateddelayedfluorescence' class='gray_back'><strong>[739] Donor-only substituted benzene achieves thermally activated delayed fluorescence<\/strong><br \/>Masashi Mamada, Sawako Yada, Masahiro Hayakawa, Ryota Uchida, Hiroshi Katagiri, Takuji Hatakeyama, Chihaya Adachi<br \/>\n<i>Communications Chemistry<\/i>, <strong>7<\/strong>, 212, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s42004-024-01301-4' target='_blank'>https:\/\/doi.org\/10.1038\/s42004-024-01301-4<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientphotosensitizedluminescencefromeu3ininertnanocrystalsvialigandcoordination' class='gray_back'><strong>[738] Efficient photosensitized luminescence from Eu<sup>3+<\/sup> in inert nanocrystals via ligand coordination<\/strong><br \/>GOUSHI Kenichi, Kashiwagi Yusaku, Adachi Chihaya<br \/>\n<i>Japanese Journal of Applied Physics<\/i>, <strong>63<\/strong>, 9, 2024<br \/>DOI: <a href=' https:\/\/doi.org\/10.35848\/1347-4065\/ad760d' target='_blank'> https:\/\/doi.org\/10.35848\/1347-4065\/ad760d<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#modifiedpromptanddelayedkineticsinastronglycoupledorganicmicrocavitycontainingamultiresonancetadfemitter' class='gray_back'><strong>[737] Modified Prompt and Delayed Kinetics in a Strongly-Coupled Organic Microcavity Containing a Multi-Resonance TADF Emitter<\/strong><br \/>Ishii Tomohiro, P\u00e9rez-S\u00e1nchez Juan, Yuen-Zhou Joel, Adachi Chihaya, Hatakeyama Takuji, K\u00e9na-Cohen  St\u00e9phane<br \/>\n<i>ACS Photonics<\/i>, <strong>11<\/strong>, 10, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsphotonics.4c00488' target='_blank'>https:\/\/doi.org\/10.1021\/acsphotonics.4c00488<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#naphthalenediimidebasedhydrogenbondedorganicframeworkforhighelectricalconductivityandammoniasensorapplications' class='gray_back'><strong>[736] Naphthalene Diimide-Based Hydrogen-Bonded Organic Framework for High Electrical Conductivity and Ammonia Sensor Applications<\/strong><br \/>Kentaro Imaoka, Hyung Suk Kim, Yusei Yamamoto, Satoshi Fukutomi, Lise-Marie Chamoreau, Liyuan Qu, Hiroaki Iguchi, Youichi Tsuchiya, Toshikazu Ono*, Fabrice Mathevet*, Chihaya Adachi*<br \/>\n<i>Advanced Functional Materials<\/i>, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.202409299' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.202409299<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#molecularasymmetryandrigidificationasstrategiestoactivateandenhancethermallyactivateddelayedfluorescenceindeepbluemrtadfemitters' class='gray_back'><strong>[735] Molecular asymmetry and rigidification as strategies to activate and enhance thermally activated delayed fluorescence in deep-blue MR-TADF emitters<\/strong><br \/>Rangani Wathsala Weerasinghe, John Dos Santos, Youhei Chitose, Tomas Matulaitis, Stuart Warriner, Debasish Barman, Chin-Yiu Chan, Youichi Tsuchiya, Eli Zysman-Colman, Chihaya Adachi  <br \/>\n<i>Physical Chemistry Chemical Physics<\/i>, <strong>26<\/strong>, 21337 - 21341, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D4CP02664K' target='_blank'>https:\/\/doi.org\/10.1039\/D4CP02664K<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallystableperovskitesolarcellswithfluoropolymercoating' class='gray_back'><strong>[734] Thermally Stable Perovskite Solar Cells with Fluoropolymer Coating<\/strong><br \/>Yuki Fujita, Dai Semba, Badamgarav Purev-Ochir, Nozomi Nakamura, Telugu Bhim Raju, Toshinori Matsushima*, Chihaya Adachi*<br \/>\n<i>Solar RRL<\/i>, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/solr.202400342' target='_blank'>https:\/\/doi.org\/10.1002\/solr.202400342<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#simultaneouscontrolofcarriertransportandfilmpolarizationofemissionlayersaimedathighperformanceoleds' class='gray_back'><strong>[733] Simultaneous control of carrier transport and film polarization of emission layers aimed at high-performance OLEDs<\/strong><br \/>Masaki Tanaka, Chin-Yiu Chan, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Nature Communications<\/i>, <strong>15<\/strong>, 5950, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-024-50326-9' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-024-50326-9<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#coreshellwavefunctionmodulationinorganicnarrowbandemitters' class='gray_back'><strong>[732] \u201cCore\u2013Shell\u201d Wave Function Modulation in Organic Narrowband Emitters<\/strong><br \/>Masahiro Hayakawa, Xun Tang, Yuta Ueda, Hayato Eguchi, Masakazu Kondo, Susumu Oda, Xiao-Chun Fan, Gerardus N. Iswara Lestanto, Chihaya Adachi, Takuji Hatakeyama<br \/>\n<i>Journal of the American Chemical Society<\/i>, <strong>146<\/strong>, 27, 18331 - 18340, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/jacs.4c02598 ' target='_blank'>https:\/\/doi.org\/10.1021\/jacs.4c02598 <\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#hexacarbazolylbenzeneanexcellenthostmoleculecausingstrongguestmolecularorientationandthehighperformanceoleds' class='gray_back'><strong>[731] Hexacarbazolylbenzene: An excellent host molecule causing strong guest molecular orientation and the high-performance OLEDs<\/strong><br \/>Bhagya Madushani, Masashi Mamada, Kenichi Goushi, Hiroshi Katagiri, Hajime Nakanotani, Takuji Hatakeyama, Chihaya Adachi<br \/>\n<i>Advanced Materials<\/i>, <strong>36<\/strong>, 30, 2024<br \/>DOI: <a href=' https:\/\/doi.org\/10.1002\/adma.202402275' target='_blank'> https:\/\/doi.org\/10.1002\/adma.202402275<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#unexploredexciplexformationprocessbydualexcitationofdonorandacceptorlayersopticallyandelectrically' class='gray_back'><strong>[730] Unexplored exciplex formation process by dual excitation of donor and acceptor layers optically and electrically<\/strong><br \/>Tharindu P. B. Rajakaruna, Xun Tang, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>12<\/strong>, 28, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202401237' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202401237<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#spacerdependenceofexciplexdynamicsindonorspaceracceptorlayers' class='gray_back'><strong>[729] Spacer dependence of exciplex dynamics in donor\/spacer\/acceptor layers<\/strong><br \/>Tharindu P. B. Rajakaruna, Xun Tang, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Chemical Physics Letters<\/i>, <strong>848<\/strong>, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.cplett.2024.141390' target='_blank'>https:\/\/doi.org\/10.1016\/j.cplett.2024.141390<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#impactofspontaneousorientationalpolarizationontriplettripletupconversionbasedblueorganiclightemittingdiodes' class='gray_back'><strong>[728] Impact of Spontaneous Orientational Polarization on Triplet-Triplet Upconversion-Based Blue Organic Light-Emitting Diodes<\/strong><br \/>Shunta Kakumachi, Hajime Nakanotani, Yuto Nagasaki, Chihaya Adachi<br \/>\n<i>ACS Applied Materials & Interfaces<\/i>, <strong>16<\/strong>, 24, 31392 - 31398, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsami.4c02821' target='_blank'>https:\/\/doi.org\/10.1021\/acsami.4c02821<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#visualizationofmultipleresonanceinducedfrontiermolecularorbitalsinasinglemrtadfmolecule' class='gray_back'><strong>[727] Visualization of Multiple-Resonance-Induced Frontier Molecular Orbitals in a Single MR-TADF Molecule<\/strong><br \/>Bae, Jaehyun, Imai-Imada, Miyabi, Kim, Hyung Suk, Lee, Minhui, Imada, Hiroshi, Tsuchiya, Youichi, Hatakeyama, Takuji, Adachi, Chihaya, Kim, Yousoo<br \/>\n<i>ACS Nano<\/i>, <strong>18<\/strong>, 27, 17987 - 17995, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsnano.4c04813' target='_blank'>https:\/\/doi.org\/10.1021\/acsnano.4c04813<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#improvedphotoluminescenceelectroluminescenceandlasercharacteristicsof1naphthylmethylaminebasedquasitwodimensionalperovskitefilmsatlowertemperatures' class='gray_back'><strong>[726] Improved Photoluminescence, Electroluminescence, and Laser Characteristics of 1-Naphthylmethylamine-Based Quasi-Two-Dimensional Perovskite Films at Lower Temperatures<\/strong><br \/>Ryotaro Nasu, Xun Tang, Adikari Mudiyanselage Chathuranganie Senevirathne, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>The Journal of Physical Chemistry C<\/i>, <strong>128<\/strong>, 26, 10974 - 10981, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpcc.4c01763' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpcc.4c01763<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#stablepuregreenorganiclightemittingdiodestowardrec2020standard' class='gray_back'><strong>[725] Stable pure-green organic light-emitting diodes toward Rec.2020 standard<\/strong><br \/>Xun Tang, Tuul Tsagaantsooj, TharinduP.B.Rajakaruna, Kai Wang, Xian-Kai Chen, Xiao-Hong Zhang, Takuji Hatakeyama, Chihaya Adachi<br \/>\n<i>Nature Communications<\/i>, <strong>15<\/strong>, 4394, 2024<br \/>DOI: <a href=' https:\/\/doi.org\/10.1038\/s41467-024-48659-6' target='_blank'> https:\/\/doi.org\/10.1038\/s41467-024-48659-6<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#delocalizedasynchronousclosedloopdiscoveryoforganiclaseremitters' class='gray_back'><strong>[724] Delocalized, asynchronous, closed-loop discovery of organic laser emitters<\/strong><br \/>Felix Strieth-Kalthoff, Han Hao, Vandana Rathore, Joshua Derasp, Th\u00e9ophile Gaudin, Nicholas H. Angello, Martin Seifrid, Ekaterina Trushina, Mason Guy, Junliang Liu, Xun Tang, Masashi  Mamada, Wesley Wang, Tuul Tsagaantsooj, Cyrille Lavigne, Robert Pollice, Tony C. Wu,  Kazuhiro Hotta, Leticia Bodo, Shangyu Li, Mohammad Haddadnia, Agnieszka Wo\u0142os, Rafa\u0142 Roszak, Cher Tian Ser, Carlota Bozal-Ginesta, Riley J. Hickman, Jenya Vestfrid, Andr\u00e9s Aguilar-Granda, Elena L. Klimareva, Ralph C. Sigerson, Wenduan Hou, Daniel Gahler, Slawomir Lach,\u2028Adrian Warzybok, Oleg  Borodin, Simon Rohrbach, Benjamin Sanchez-Lengeling, Chihaya Adachi, Bartosz A. Grzybowski,  Leroy Cronin, Jason E. Hein, Martin D. Burke, Al\u00e1n Aspuru-Guzik <br \/>\n<i>Science<\/i>, <strong>384<\/strong>, 6997, 2024<br \/>DOI: <a href='https:\/\/www.science.org\/doi\/10.1126\/science.adk9227' target='_blank'>https:\/\/www.science.org\/doi\/10.1126\/science.adk9227<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#realizingaflexibleandwavelengthtunablerandomlaserinspiredbycicadawingsreplica' class='gray_back'><strong>[723] Realizing a flexible and wavelength-tunable random laser inspired by cicada wings<\/strong><br \/>Chia-Jung Chou, Ayano Abe, Jian-Fu Tang, Tzu-Chau Lin, Chi-Ching Kuo, Ja-Hon Lin, Chihaya Adachi<br \/>\n<i>Journal of Materials Chemistry C<\/i>, <strong>16<\/strong>, 12, 5701 - 5707, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D3TC03576J' target='_blank'>https:\/\/doi.org\/10.1039\/D3TC03576J<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientnearinfraredfluorescenceindeuteratedhostguestsystemfornearinfraredorganiclightemittingdiodes' class='gray_back'><strong>[722] Efficient Near-Infrared Fluorescence in Deuterated Host-Guest System for Near-Infrared Organic Light-Emitting Diodes<\/strong><br \/>Qun Yu, Yuika Tamura, Hajime Nakanotani, Masashi Mamada, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>12<\/strong>, 21, 2024<br \/>DOI: <a href=' https:\/\/doi.org\/10.1002\/adom.202400932' target='_blank'> https:\/\/doi.org\/10.1002\/adom.202400932<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#brightefficientandstablepuregreenhyperfluorescentorganiclightemittingdiodesbyjudiciousmoleculardesign' class='gray_back'><strong>[721] Bright, efficient, and stable pure-green hyperfluorescent organic light-emitting diodes by judicious molecular design<\/strong><br \/>Yi-Ting Lee, Chin-Yiu Chan, Nanami Matsuno, Shigetada Uemura, Susumu Oda, Masakazu Kondo, Rangani Wathsala Weerasinghe, Yanmei Hu, Gerardus N. Iswara Lestanto, Youichi Tsuchiya, Yufang Li, Takuji Hatakeyama, Chihaya Adachi<br \/>\n<i>Nature Communications<\/i>, <strong>15<\/strong>, 3174, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-024-47482-3' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-024-47482-3<\/a><br \/><a href=\"https:\/\/www.nature.com\/ncomms\/editorshighlights\">Editors\u2019 Highlights<\/a><font color=\"red\">\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#aboronnitrogenandoxygendoped%cf%80extendedhelicalpurebluemultiresonantthermallyactivateddelayedfluorescentemitterfororganiclightemittingdiodesthatshowsfastkriscwithoutthe2' class='gray_back'><strong>[720] A Boron, Nitrogen, and Oxygen Doped \u03c0-Extended Helical Pure Blue Multiresonant Thermally Activated Delayed Fluorescent Emitter for Organic Light Emitting Diodes That Shows Fast kRISC Without the Use of Heavy Atoms<\/strong><br \/>Rangani Wathsala Weerasinghe, Subeesh Madayanad Suresh, David Hall, Tomas Matulaitis, Alexandra M. Z. Slawin, Stuart Warriner, Yi-Ting Lee, Chin-Yiu Chan, Youichi Tsuchiya, Eli Zysman-Colman, Chihaya Adachi<br \/>\n<i>Advanced Materials<\/i>, <strong>36<\/strong>, 26, 2402289, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.202402289' target='_blank'>https:\/\/doi.org\/10.1002\/adma.202402289<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#effectofmultipleacceptorstructuresinelectrontransportmaterialsonoperationallifetimeofbluethermallyactivateddelayedfluorescenceorganiclightemittingdiodes' class='gray_back'><strong>[719] Effect of multiple acceptor structures in electron transport materials on operational lifetime of blue thermally activated delayed fluorescence organic light-emitting diodes<\/strong><br \/>Shione Kiriyama, Masashi Mamada, Kenichi Goushi, Bhagya Madushani, Takuji Hatakeyama, Chihaya Adachi<br \/>\n<i>Advanced Functional Materials<\/i>, <strong>34<\/strong>, 37, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.202402287' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.202402287<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#cotrimerizationofbenzonitrileswithguanidinehydrochloridesynthesisof2bromo46diaryl135triazinederivativesbearingelectronwithdrawingarylgroup' class='gray_back'><strong>[718] Co-trimerization of Benzonitriles with Guanidine Hydrochloride: Synthesis of 2-Bromo-4,6-Diaryl-1,3,5-Triazine Derivatives Bearing Electron-Withdrawing Aryl Group<\/strong><br \/>Youhei Chitose, Yuika Tamura, Youichi Tsuchiya, Chihaya Adachi<br \/>\n<i>Chemistry Letters<\/i>, <strong>53<\/strong>, 4, 59, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1093\/chemle\/upae059' target='_blank'>https:\/\/doi.org\/10.1093\/chemle\/upae059<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#suppressedgoldpenetrationwiththemolybdenumoxideinterlayertoincreasepowerconversionefficiencyofperovskitesolarcells' class='gray_back'><strong>[717] Suppressed gold penetration with the molybdenum oxide interlayer to increase power conversion efficiency of perovskite solar cells<\/strong><br \/>Badamgarav Purev-Ochir, Jun Tae Song, Pangpang Wang, Masayuki Yahiro, Sunao Yamada, Hajime Nakanotani, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Solar RRL<\/i>, <strong>8<\/strong>, 8, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/solr.202400029' target='_blank'>https:\/\/doi.org\/10.1002\/solr.202400029<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#understandingofcomplexspinupconversionprocessesinchargetransfertypeorganicmolecules' class='gray_back'><strong>[716] Understanding of complex spin up-conversion processes in charge-transfer-type organic molecules<\/strong><br \/>Hyung Suk Kim, Sang Hoon Lee, Seunghyup Yoo, Chihaya Adachi<br \/>\n<i>Nature Communications<\/i>, <strong>15<\/strong>, 2267, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-024-46406-5' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-024-46406-5<\/a><br \/><font color=\"red\">Research Communities\u306e<\/font><a href=\"https:\/\/communities.springernature.com\/posts\/understanding-of-complex-spin-up-conversion-processes-in-charge-transfer-type-organic-molecules\">Behind the paper<\/a><font color=\"red\">\u306b\u63b2\u8f09\u3055\u308c\u3066\u3044\u307e\u3059\uff01<\/font><br><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientnarrowbandandstableelectroluminescencefromorganoboronnitrogencarbonylemitter' class='gray_back'><strong>[715] Efficient, narrow-band, and stable electroluminescence from organoboron-nitrogen-carbonyl emitter<\/strong><br \/>Ying-Chun Cheng, Xun Tang, Kai Wang, Xin Xiong, Xiao-Chun Fan, Shulin Luo, Rajat Walia, Yue Xie, Tao Zhang, Dandan Zhang, Jia Yu, Xian-Kai Chen, Chihaya Adachi, Xiao-Hong Zhang<br \/>\n<i>Nature Communications<\/i>, <strong>15<\/strong>, 731, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-024-44981-1' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-024-44981-1<\/a><br \/><a href=\"https:\/\/www.nature.com\/ncomms\/editorshighlights\">Editors\u2019 Highlights<\/a><font color=\"red\">\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#rigorousdeterminationofdipoleorientationinorganicthinfilmsusingangledependentphotoluminescence' class='gray_back'><strong>[714] Rigorous Determination of Dipole Orientation in Organic Thin-films using Angle-dependent Photoluminescence<\/strong><br \/>Yeonghoon Jin, Hyung Suk Kim, Donggyun Lee, Chihaya Adachi, Seunghyup Yoo, Kyoungsik Yu<br \/>\n<i>The Journal of Physical Chemistry C<\/i>, <strong>128<\/strong>, 4, 1755 - 1761, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpcc.3c06330' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpcc.3c06330<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#advancedmoleculardesignforefficientmulticolorelectrochemiluminescenceandamplifiedspontaneousemissionbasedontetrabf2complexes' class='gray_back'><strong>[713] Advanced Molecular Design for Efficient Multicolor Electrochemiluminescence and Amplified Spontaneous Emission based on Tetra-BF2 Complexes<\/strong><br \/>Luxia Cui, Ami Horioka, Ryoichi Ishimatsu, Masashi Mamada, Chihaya Adachi, Keishiro Tahara, Yu Hoshino, Toshikazu Ono<br \/>\n<i>Advanced Optical Materials<\/i>, 2302803, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202302803' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202302803<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#threedimensionalsensingofsurfacesbyprojectionofinvisibleelectroluminescencefromorganiclightemittingdiodes' class='gray_back'><strong>[712] Three-dimensional sensing of surfaces by projection of invisible electroluminescence from organic light-emitting diodes<\/strong><br \/>Nishiki Yamada, Hajime Nakanotani, Akitsuna Takagi, Masashi Mamada, Umamahesh Balijapalli, Tatsuya Ichikawa, Eiji Hirata, Shun Kaizu, Akira Tanaka, Kazuichiro Itonaga, Chihaya Adachi<br \/>\n<i>Science Advances<\/i>, <strong>10<\/strong>, 1, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1126\/sciadv.adj6583' target='_blank'>https:\/\/doi.org\/10.1126\/sciadv.adj6583<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#luminescencemechanismoftadfmoleculesshowingpeculiarthermalbehavior2' class='gray_back'><strong>[711] Luminescence mechanism of TADF molecules showing peculiar thermal behavior<\/strong><br \/>Youichi Tsuchiya, Keito Mizukoshi, Masaki Saigo, Tomohiro Ryu, Kiyoshi Miyata, Ken Onda, Chihaya Adachi<br \/>\n<i>Faraday Discussions<\/i>, <strong>250<\/strong>, 233 - 250, 2024<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D3FD00151B' target='_blank'>https:\/\/doi.org\/10.1039\/D3FD00151B<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#adonoracceptorcageforcircularlypolarizedtadfemission' class='gray_back'><strong>[710] A donor\u2013acceptor cage for circularly polarized TADF emission<\/strong><br \/>Lihua Chen, Chenfei Li, Zheng-Fei Liu, Yoshiaki Kuboi, Enguang Fu, Lydia Sosa Vargas, Chihaya Adachi*, Fabrice Mathevet*, Shaodong Zhang<br \/>\n<i>ChemComm<\/i>, <strong>60<\/strong>, 5, 1758 - 1761, 2024<br \/>DOI: <a href='DOI\thttps:\/\/doi.org\/10.1039\/D3CC05136F' target='_blank'>DOI\thttps:\/\/doi.org\/10.1039\/D3CC05136F<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2023'>2023<\/h4><div rel='#judiciousdesignofpyridinebasedhostsforstableefficientandlowdrivingthermallyactivateddelayedfluorescenceorganiclightemittingdiodes' class='gray_back'><strong>[709] Judicious Design of Pyridine-based Hosts for Stable, Efficient, and Low-Driving Thermally Activated Delayed Fluorescence Organic Light-Emitting Diodes<\/strong><br \/>Yanmei Hu, Alexander Civil, Yufang Li, Gerardus N. Iswara Lestanto, Youichi Tsuchiya, Chin-Yiu Chan, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202302971' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202302971<\/a><br \/>[80]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#comparisonofexcitonannihilationprocessesinprototypicalchargetransfermolecules' class='gray_back'><strong>[708] Comparison of Exciton Annihilation Processes in Prototypical Charge-Transfer Molecules<\/strong><br \/>Hyung Suk Kim, Sang Hoon Lee, Chihaya Adachi<br \/>\n<i>The Journal of Physical Chemistry C<\/i>, <strong>128<\/strong>, 3, 994 - 1002, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpcc.3c06465' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpcc.3c06465<\/a><br \/><font color=\"red\">Cover\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"https:\/\/pubs.acs.org\/toc\/jpccck\/128\/3\">The Journal of Physical Chemistry C<\/a><font color=\"red\">--January 2024<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#theroleofspontaneousorientationpolarizationonchargestoragebehaviorataninterfacebetweenorganicsemiconductorlayers' class='gray_back'><strong>[707] The role of spontaneous orientation polarization on charge storage behavior at an interface between organic semiconductor layers<\/strong><br \/>Takahiko Yamanaka, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Journal of Materials Chemistry C<\/i>, <strong>12<\/strong>, 1055 - 1060, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D3TC03979J' target='_blank'>https:\/\/doi.org\/10.1039\/D3TC03979J<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#arigidmultipleresonancethermallyactivateddelayedfluorescencecoretowardstableelectroluminescenceandlasing' class='gray_back'><strong>[706] A Rigid Multiple Resonance Thermally Activated Delayed Fluorescence Core Toward Stable Electroluminescence and Lasing<\/strong><br \/>Xun Tang, Mingchen Xie, Zesen Lin, Kirill Mitrofanov, Tuul Tsagaantsooj, Yi-Ting Lee, Ryota Kabe, Atula S. D. Sandanayaka, Toshinori Matsushima, Takuji Hatakeyama, Chihaya Adachi<br \/>\n<i>Angewandte Chemie<\/i>, <strong>63<\/strong>, 2, e202315210, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202315210' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202315210<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lightbluerigidexcitedstateintramolecularprotontransferorganicsemiconductorlaserchromophores' class='gray_back'><strong>[705] Light Blue Rigid Excited-State Intramolecular Proton Transfer Organic Semiconductor Laser Chromophores<\/strong><br \/>Ilene Allison, Mashashi Mamada, Atul Shukla, Sarah K. M. McGregor, Ras  Baizureen Roseli, Innes Gale, Vijay P. Rahane, Evan G. Moore, Elizabeth H.  Krenske, Nidhi Jain, Chihaya Adachi, Ebinazar B. Namdas, Shih-Chun Lo<br \/>\n<i>Journal of Materials Chemistry C<\/i>, <strong>11<\/strong>, 15861 - 15872, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D3TC02707D' target='_blank'>https:\/\/doi.org\/10.1039\/D3TC02707D<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#apolartransitionofspontaneousorientationpolarizationinorganicamorphousthinfilms' class='gray_back'><strong>[704] A polar transition of spontaneous orientation polarization in organic amorphous thin films<\/strong><br \/>Yuuhi Ueda, Masaki Tanaka, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Chemical Physics Letters<\/i>, <strong>833<\/strong>, 140915, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.cplett.2023.140915' target='_blank'>https:\/\/doi.org\/10.1016\/j.cplett.2023.140915<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#indicationofintramoleculartriplettripletannihilationupconversioninorganiclightemittingdiodes' class='gray_back'><strong>[703] Indication of Intramolecular Triplet\u2013Triplet Annihilation Upconversion in Organic Light-Emitting Diodes<\/strong><br \/>Shoma Sasaki, Kenichi Goushi, Masashi Mamada, Shiori Miyazaki, Kiyoshi Miyata, Ken Onda, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>12<\/strong>, 3, 2301924, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202301924' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202301924<\/a><br \/><font color=\"red\">Front Cover\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2024\/02\/Cover-Picture.pdf\">Advanced Optical Materials<\/a><font color=\"red\">--January 2024<\/font><br \/>\r\n\r\n<font color=\"red\">2023\u5e74\u6700\u3082\u8aad\u307e\u308c\u305f\u8ad6\u6587\uff08TOP10\uff05\uff09\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#permeationofoxygenandwaterintoaplasmaenhancedchemicalvapordepositedsiliconnitridefilmasfunctionofdepositionpressure' class='gray_back'><strong>[702] Permeation of Oxygen and Water into a Plasma-Enhanced Chemical Vapor Deposited Silicon Nitride Film as Function of Deposition Pressure<\/strong><br \/>Masayuki Shiochi, Hiroshi Fujimoto, Hin Wai Mo, Keiko Inoue, Yusaku Tanahashi, Hiroyuki Hosomi, Takashi Miyamoto, Hiroshi Miyazaki, Chihaya Adachi<br \/>\n<i>Journal of Vacuum Science and Technology B<\/i>, <strong>41<\/strong>, 60601, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1116\/6.0003050' target='_blank'>https:\/\/doi.org\/10.1116\/6.0003050<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#doublelockednarrowbandhybridlocallyexcitedandchargetransferemitterexhibitingamplifiedspontaneousemission' class='gray_back'><strong>[701] Double-locked narrowband hybrid locally-excited and charge-transfer emitter exhibiting amplified spontaneous emission<\/strong><br \/>Long Chen, Xun Tang, Ruihong Liu, Qi Zheng, Youjun Yu, Dingying Zhou, Shengyi Yang, Chihaya Adachi, Liangsheng Liao, Zuoquan Jiang<br \/>\n<i>The Innovation Materials<\/i>, <strong>1<\/strong>, 2, 100026, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.59717\/j.xinn-mater.2023.100026' target='_blank'>https:\/\/doi.org\/10.59717\/j.xinn-mater.2023.100026<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#antistokesluminescenceinmultiresonancetypethermallyactivateddelayedfluorescencemolecules' class='gray_back'><strong>[700] Anti-Stokes Luminescence in Multi-Resonance-Type Thermally-Activated Delayed Fluorescence Molecules<\/strong><br \/>Shintaro Kohata, Hajime Nakanotani, Youhei Chitose, Takuma Yasuda, Youichi Tsuchiya, Chihaya Adachi<br \/>\n<i>Angewandte Chemie<\/i>, <strong>62<\/strong>, 44, e202312326, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202312326' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202312326<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#investigationofchargetransportpropertiesina2ddionjacobsonhalideperovskitebasedonterphenyldications' class='gray_back'><strong>[699] Investigation of charge transport properties in a 2D Dion-Jacobson halide perovskite based on terphenyl dications<\/strong><br \/>Xuelong Liu, Narayanaswamy Kamatham, Zhangsheng Shi, Shidong Yu, Qing Ren, Kentaro Imaoka, Chin-Yiu Chan, Beno\u00eet Heinrich, Robin Troiville-Cazilhac, Lise-Marie Chamoreau, Lydia Sosa Vargas, David Kreher, Youichi Tsuchiya, Toshinori Matsushima, Xiankai Chen, Fabrice Mathevet, Chihaya Adachi<br \/>\n<i>ACS Materials Letters<\/i>, <strong>5<\/strong>, 8, 2148 - 2155, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsmaterialslett.3c00509' target='_blank'>https:\/\/doi.org\/10.1021\/acsmaterialslett.3c00509<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#abruptexcitonquenchinginbluefluorescentorganiclightemittingdiodesaroundturnonvoltageregion' class='gray_back'><strong>[698] Abrupt exciton quenching in blue fluorescent organic light-emitting diodes around turn-on voltage region<\/strong><br \/>Shunta Kakumachi, Thanh Ba Nguyen, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Chemical Engineering Journal<\/i>, <strong>471<\/strong>, 144516, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.cej.2023.144516' target='_blank'>https:\/\/doi.org\/10.1016\/j.cej.2023.144516<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#excitondynamicsandopticallypumpedlasingin1naphthylmethylaminebasedquasitwodimensionalperovskitefilms' class='gray_back'><strong>[697] Exciton Dynamics and Optically Pumped Lasing in 1-Naphthylmethylamine-Based Quasi-2D Perovskite Films<\/strong><br \/>Ryotaro Nasu, Xun Tang, Satoru Watanabe, Chathuranganie A. M. Senevirathne, Ganbaatar Tumen-Ulzii, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Advanced Functional Materials<\/i>, <strong>33<\/strong>, 44, 2301794, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.202301794' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.202301794<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientlightharvestingofeuiiicomplexinahostguestfilmbytripletsensitization' class='gray_back'><strong>[696] Highly Efficient Light Harvesting of Eu(III) Complex in a Host-Guest Film by Triplet Sensitization<\/strong><br \/>Shiori Miyazaki, Goushi Kenichi , Yuichi Kitagawa, Yasuchika Hasegawa, Chihaya Adachi, Kiyoshi Miyata, Ken Onda<br \/>\n<i>Chemical Science<\/i>, <strong>14<\/strong>, 6867 - 6875, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D3SC01817B' target='_blank'>https:\/\/doi.org\/10.1039\/D3SC01817B<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#oxygeninducedreversibledegradationofperovskitesolarcells' class='gray_back'><strong>[695] Oxygen-Induced Reversible Degradation of Perovskite Solar Cells<\/strong><br \/>Badamgarav Purev-Ochir, Xuelong Liu, Yuki Fujita, Dai Semba, Telugu Bhim Raju, Ganbaatar Tumen-Ulzii, Atsushi Wachi, Hiroshi Sato, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Solar RRL<\/i>, <strong>7<\/strong>, 14, 2300127, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/solr.202300127' target='_blank'>https:\/\/doi.org\/10.1002\/solr.202300127<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#theeffectofhydrogenbondingonthermallyactivateddelayedfluorescencebehaviorsbasedonastudyofhydratecrystals' class='gray_back'><strong>[694] Effect of Hydrogen Bonding on Thermally Activated Delayed Fluorescence Behaviors Based on a Study of Hydrate Crystals<\/strong><br \/>Masashi Mamada, Hiroshi Katagiri, Chihaya Adachi<br \/>\n<i>The Journal of Physical Chemistry Letters<\/i>, <strong>14<\/strong>, 5221 - 5225, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpclett.3c00915' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpclett.3c00915<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#multipledonoracceptordesignforhighlyluminescentandstablethermallyactivateddelayedfluorescenceemitters' class='gray_back'><strong>[693] Multiple donor\u2013acceptor design for highly luminescent and stable thermally activated delayed fluorescence emitters<\/strong><br \/>Bhagya Madushani, Masashi Mamada, Kenichi Goushi, Thanh Ba Nguyen, Hajime Nakanotani, Hironori Kaji, Chihaya Adachi<br \/>\n<i>Scientific Reports<\/i>, <strong>13<\/strong>, 7644, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41598-023-34623-9' target='_blank'>https:\/\/doi.org\/10.1038\/s41598-023-34623-9<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#colortuningofmultiresonantthermallyactivateddelayedfluorescenceemittersbasedonfullyfusedpolycyclicaminecarbonylframeworks' class='gray_back'><strong>[692] Color Tuning of Multi-Resonant Thermally Activated Delayed Fluorescence Emitters Based on Fully Fused Polycyclic Amine\/Carbonyl Frameworks<\/strong><br \/>John Dos Santos, Chin-Yiu Chan, Shi Tang, David Hall, Tomas Matulaitis, David Bradford Cordes, Alexandra Slawin, Youichi Tsuchiya, Ludvig Edman, Chihaya Adachi, Yoann Olivier, Eli Zysman-Colman<br \/>\n<i>Journal of Materials Chemistry C<\/i>, <strong>11<\/strong>, 8263 - 8273, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D3TC00641G' target='_blank'>https:\/\/doi.org\/10.1039\/D3TC00641G<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#developmentofanewholetransportmaterialforperovskitesolarcells' class='gray_back'><strong>[691] Development of a new hole transport material for perovskite solar cells<\/strong><br \/>Ganbaatar Tumen-Ulzii, Kotaro Takekuma, Yuki Fujita, Dai Senba, Chathuranganie A. M. Senevirathne, Yi-Ting Lee, Atsushi Wachi, Hiroshi Sato, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Applied Physics Letters<\/i>, <strong>122<\/strong>, 201101, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/5.0150066' target='_blank'>https:\/\/doi.org\/10.1063\/5.0150066<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancingtriplettripletupconversionefficiencyandoperationallifetimeinblueorganiclightemittingdiodesbyutilizingthermallyactivateddelayedfluorescencematerials' class='gray_back'><strong>[690] Enhancing triplet-triplet upconversion efficiency and operational lifetime in blue organic light-emitting diodes by utilizing thermally-activated delayed fluorescence materials<\/strong><br \/>Thanh B Nguyen, Hajime Nakanotani, Chin-Yiu Chan, Shunta Kakumachi, Chihaya Adachi<br \/>\n<i>ACS Applied Materials & Interfaces<\/i>, <strong>15<\/strong>, 19, 23557 - 23563, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsami.3c02855' target='_blank'>https:\/\/doi.org\/10.1021\/acsami.3c02855<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#apostmodificationofpyrrolopyrroleazabodipytowardhighnearinfraredfluorescencebrightness' class='gray_back'><strong>[689] Post-Modification of Pyrrolopyrrole Aza-BODIPY toward High Near-Infrared Fluorescence Brightness<\/strong><br \/>Yitong Wang, Shigeki Mori, Hajime Nakanotani, Chihaya Adachi, Soji Shimizu<br \/>\n<i>Organic Letters<\/i>, <strong>25<\/strong>, 17, 3040 - 3044, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.orglett.3c00848' target='_blank'>https:\/\/doi.org\/10.1021\/acs.orglett.3c00848<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#adonoracceptorcageforthermallyactivateddelayedfluorescencetowardanewkindoftadfexciplexemitters' class='gray_back'><strong>[688] A Donor\u2013Acceptor Cage for Thermally Activated Delayed Fluorescence: toward a New Kind of TADF Exciplex Emitters<\/strong><br \/>Lihua Chen, Chuanlong Li, Enguang Fu, Mengyang Li, Yoshiaki Kuboi, Zi-Ying Li, Zhenghong Chen, Jiaolong Chen, Xuelong Liu, Xun Tang, Lucas Fr\u00e9d\u00e9ric, Fran\u00e7ois Maurel, Chihaya Adachi, Fabrice Mathevet, Shaodong Zhang<br \/>\n<i>ACS Materials Letters<\/i>, <strong>5<\/strong>, 5, 1450 - 1455, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsmaterialslett.3c00310' target='_blank'>https:\/\/doi.org\/10.1021\/acsmaterialslett.3c00310<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#progressandperspectivetowardcontinuouswaveorganicsolidstatelasers' class='gray_back'><strong>[687] Progress and Perspective Toward Continuous-Wave Organic Solid-State Lasers<\/strong><br \/>Xun Tang, Chathuranganie A. M. Senevirathne, Toshinori Matsushima, Atula S. D. Sandanayaka, Chihaya Adachi<br \/>\n<i>Advanced Materials<\/i>, 2211873, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.202211873' target='_blank'>https:\/\/doi.org\/10.1002\/adma.202211873<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#classicfluorophoreswithahorizontalalignmentforenhancinglightoutcouplingefficiency%e2%89%8830andexternalquantumefficiency%e2%89%887ofnearultraviolet%ce%bbmax400nmorganic' class='gray_back'><strong>[686] Classic Fluorophores With a Horizontal Alignment for Enhancing Light Outcoupling Efficiency (\u224830%) and External Quantum Efficiency (\u22487%) of Near Ultraviolet (\u03bbmax < 400 nm) Organic Light-Emitting Diodes<\/strong><br \/>Jian Haur Lee, Jing-Xiang Huang, Chia-Hsun Chen, Yi-Ting Lee, Chin-Yiu Chan, Yi-Chung Dzeng, Po-Wen Tang, Chi Chen, Chihaya Adachi, Tien-Lung Chiu, Jiun-Haw Lee, Chin-Ti Chen<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>11<\/strong>, 8, 2202666, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202202666' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202202666<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organicbinaryandternarycocrystalengineeringbasedonhalogenbondingaimedatroomtemperaturephosphorescence' class='gray_back'><strong>[685] Organic Binary and Ternary Cocrystal Engineering Based on Halogen Bonding Aimed at Room-Temperature Phosphorescence<\/strong><br \/>Ayano Abe, Kenichi Goushi, Masashi Mamada, Chihaya Adachi<br \/>\n<i>Advanced Materials<\/i>, 2211160, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.202211160' target='_blank'>https:\/\/doi.org\/10.1002\/adma.202211160<\/a><br \/>[8]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#donorinfluenceontheoptoelectronicpropertiesofnsubstitutedtetraphenylimidazolederivatives' class='gray_back'><strong>[684] Donor Influence on the Optoelectronic Properties of N-Substituted Tetraphenylimidazole Derivatives<\/strong><br \/>Tomas Matulaitis, Paloma L. dos Santos, Youichi Tsuchiya, David B. Cordes, Alexandra M. Z. Slawin, Chihaya Adachi, Ifor D. W. Samuel, Eli Zysman-Colman<br \/>\n<i>ChemistrySelect<\/i>, <strong>8<\/strong>, 9, e202300274, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/slct.202300274' target='_blank'>https:\/\/doi.org\/10.1002\/slct.202300274<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#artificialpnlikejunctionbasedonpure2dorganicinorganichalideperovskitestructurehavingnaphthalenediimideacceptormoieties' class='gray_back'><strong>[683] Artificial p-n-like junction based on pure 2D organic-inorganic halide perovskite structure having naphthalene diimide acceptor moieties<\/strong><br \/>Zhao Feng, Xuelong Liu, Kentaro Imaoka, Tomohiro Ishii, Ganbaatar Tumen-Ulzii, Xun Tang, George F. Harrington, Beno\u00eet Heinrich, Jean-Charles Ribierre, Lise-Marie Chamoreau, Lydia Sosa Vargas, David Kreher, Kenichi Goushi, Toshinori Matsushima, Guijiang Zhou, Fabrice Mathevet, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>11<\/strong>, 10, 2202734, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202202734' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202202734<\/a><br \/>[4]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#ultrapuregreenorganiclightemittingdiodesbasedonhighlydistortedfused%cf%80conjugatedmoleculardesign' class='gray_back'><strong>[682] Ultrapure green organic light-emitting diodes based on highly distorted fused \u03c0-conjugated molecular design<\/strong><br \/>Xiao-Chun Fan, Kai Wang, Yi-Zhong Shi, Ying-Chun Cheng, Ying-Chun Cheng, Jia Yu, Xian-Kai Chen, Chihaya Adachi, Xiao-Hong Zhang<br \/>\n<i>Nature Photonics<\/i>, <strong>17<\/strong>, 280 - 285, 2023<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41566-022-01106-8' target='_blank'>https:\/\/doi.org\/10.1038\/s41566-022-01106-8<\/a><br \/>[41]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2022'>2022<\/h4><div rel='#efficientandbrightbluethermallyactivateddelayedfluorescencefromlightemittingelectrochemicalcells' class='gray_back'><strong>[681] Efficient and Bright Blue Thermally Activated Delayed Fluorescence from Light-Emitting Electrochemical Cells<\/strong><br \/>Shi Tang, Petter Lundberg, Youichi Tsuchiya, Joan R\u00e0fols-Rib\u00e9, Yongfeng Liu, Jia Wang, Chihaya Adachi, Ludvig Edman<br \/>\n<i>Advanced Functional Materials<\/i>, <strong>32<\/strong>, 44, 2205967, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.202205967' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.202205967<\/a><br \/>[11]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#sequentialmultipleborylationtowardanultrapuregreenthermallyactivateddelayedfluorescencematerial' class='gray_back'><strong>[680] Sequential Multiple Borylation Toward an Ultrapure Green Thermally Activated Delayed Fluorescence Material<\/strong><br \/>Shigetada Uemura, Susumu Oda, Masahiro Hayakawa, Ryosuke Kawasumi, Naoya Ikeda, Yi-Ting Lee, Chin-Yiu Chan, Youichi Tsuchiya, Chihaya Adachi, Takuji Hatakeyama<br \/>\n<i>Journal of the American Chemical Society<\/i>, <strong>145<\/strong>, 3, 1505 - 1511, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/jacs.2c10946' target='_blank'>https:\/\/doi.org\/10.1021\/jacs.2c10946<\/a><br \/>[25]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#achievingacarbonneutralfuturethroughadvancedfunctionalmaterialsandtechnologies2' class='gray_back'><strong>[679] Achieving a Carbon Neutral Future through Advanced Functional Materials and Technologies<\/strong><br \/>Andrew Chapman, Elif Ertekin, Masanobu Kubota, Akihide Nagao, Kaila Bertsch, Arnaud Macadre, Toshihiro Tsuchiyama, Takuro Masamura, Setsuo Takaki, Ryosuke Komoda, Mohsen Dadfarnia, Brian Somerday, Alexander Tsekov Staykov, Joichi Sugimura, Yoshinori Sawae, Takehiro Morita, Hiroyoshi Tanaka, Kazuyuki Yagi, Vlad Niste, Prabakaran Saravanan, Shugo Onitsuka, Ki-Seok Yoon, Seiji Ogo, Toshinori Matsushima, Ganbaatar Tumen-Ulzii, Dino Klotz, Dinh Hoa Nguyen, George Harrington, Chihaya Adachi, Hiroshige Matsumoto, Leonard Kwati, Yukina Takahashi, Nuttavut Kosem, Tatsumi Ishihara, Miho Yamauchi, Bidyut Baran Saha, Md. Amirul Islam, Jin Miyawaki, Harish Sivasankaran, Masamichi Kohno, Shigenori Fujikawa, Roman Selyanchyn, Takeshi Tsuji, Yukihiro Higashi, Reiner Kirchheim, Petros Sofronis<br \/>\n<i>Bulletin of the Chemical Society of Japan<\/i>, <strong>95<\/strong>, 1, 73 - 103, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/bcsj.20210323' target='_blank'>https:\/\/doi.org\/10.1246\/bcsj.20210323<\/a><br \/>[25]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#twistingofporphyrinbyassemblyinametalorganicframeworkyieldingchiralphotoconductingfilmsforcircularlypolarizedlightdetection2' class='gray_back'><strong>[678] Twisting of Porphyrin by Assembly in a Metal-Organic Framework yielding Chiral Photoconducting Films for Circularly-Polarized-Light Detection<\/strong><br \/>Chun Li, Henrik Schopmans, Lukas Langer, Stefan Marschner, Abhinav Chandresh, Jochen B\u00fcrck, Youichi Tsuchiya, Adachi Chihaya, Wolfgang Wenzel, Stefan Br\u00e4se, Mariana Kozlowska, Lars Heinke<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>62<\/strong>, 10, e202217377, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202217377' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202217377<\/a><br \/>[4]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#amaterialsaccelerationplatformfororganiclaserdiscovery' class='gray_back'><strong>[677] A Materials Acceleration Platform for Organic Laser Discovery<\/strong><br \/>Tony C Wu, Andr\u00e9s Aguilar-Granda, Kazuhiro Hotta, Sahar Alasvand Yazdani, Robert Pollice, Jenya Vestfrid, Han Hao, Cyrille Lavigne, Martin Seifrid, Nicholas Angello, Fatima Bencheikh, Jason E. Hein, Martin Burke, Chihaya Adachi, Al\u00e1n Aspuru-Guzik<br \/>\n<i>Advanced Materials<\/i>, <strong>35<\/strong>, 6, 2207070, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.202207070' target='_blank'>https:\/\/doi.org\/10.1002\/adma.202207070<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electronlifetimeofoveronemonthindisorderedorganicsolidstatefilms' class='gray_back'><strong>[676] Electron Lifetime of Over One Month in Disordered Organic Solid-State Films<\/strong><br \/>Takahiko Yamanaka, Hajime Nakanotani, Katsuhiro Nakamoto, Chihaya Adachi<br \/>\n<i>Advanced Materials<\/i>, <strong>35<\/strong>, 11, 2210335, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.202210335' target='_blank'>https:\/\/doi.org\/10.1002\/adma.202210335<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowvoltagedrivingcopperiodidebasedbroadbandelectroluminescence' class='gray_back'><strong>[675] Low-Voltage Driving Copper Iodide-based Broadband Electroluminescence<\/strong><br \/>Rui Xu, Dingshuo Zhang, Junjie Si, Yihang Du, Qianqing Hu, Xiaoming Hao, Hong Zhao, Peiqing Cai, Qi Ai, Xin Yao, Yun Gao, Meiyi Zhu, Zenan Zhang, Muzhi Cai, Hin Wai Mo, Kentaro Harada, Zhizhen Ye, Xingliang Dai, Chihaya Adachi, Zugang Liu<br \/>\n<i>ACS Energy Letters<\/i>, <strong>7<\/strong>, 12, 4408 - 4416, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsenergylett.2c02471' target='_blank'>https:\/\/doi.org\/10.1021\/acsenergylett.2c02471<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#defectpassivationbypyridinecarbazolemoleculesforefficientandstableperovskitesolarcells' class='gray_back'><strong>[674] Defect passivation by pyridine-carbazole molecules for efficient and stable perovskite solar cells<\/strong><br \/>Ganbaatar Tumen-Ulzii, Morgan Auffray, Dino Klotz, George Harrington, Xiankai Chen, Umamahesh Balijapalli, Veeramani Vediyappan, Nozomi Nakamura, Zhao Feng, Kotaro Takekuma, Yuki Fujita, Pangpang Wang, Sunao Yamada, Kaoru Tamada, Munkhbayar Batmunkh, Lin Yu Zhong, Fabrice Mathevet, Hayden Salway, Miguel Anaya, Samuel Stranks, Toshinori Matsushima, Adachi, Chihaya<br \/>\n<i>ACS Applied Energy Materials<\/i>, <strong>5<\/strong>, 12, 15819 - 15827, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsaem.2c03364' target='_blank'>https:\/\/doi.org\/10.1021\/acsaem.2c03364<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyeffectivethermallyactivateddelayedfluorescenceemittersbasedonsymmetryandasymmetrynicotinonitrilederivatives' class='gray_back'><strong>[673] Highly Effective Thermally Activated Delayed Fluorescence Emitters Based on Symmetry and Asymmetry Nicotinonitrile Derivatives<\/strong><br \/>Min Gyeong Choi, Chan Hee Lee, Chihaya Adachi, Sae Youn Lee<br \/>\n<i>Molecules<\/i>, <strong>27<\/strong>, 23, 8274, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.3390\/molecules27238274' target='_blank'>https:\/\/doi.org\/10.3390\/molecules27238274<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#verylowlasingthresholdofdabnaderivativeswithdfbstructures' class='gray_back'><strong>[672] Very low lasing threshold of DABNA derivatives with DFB structures<\/strong><br \/>Masashi Mamada, Satoshi Maedera, Susumu Oda, Thanh Ba Nguyen, Hajime Nakanotani, Takuji Hatakeyama, Chihaya Adachi<br \/>\n<i>Materials Chemistry Frontiers<\/i>, <strong>7<\/strong>, 259 - 266, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D2QM01040B ' target='_blank'>https:\/\/doi.org\/10.1039\/D2QM01040B <\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#trifluoromethylatedthermallyactivateddelayedfluorescencemoleculeasaversatilephotocatalystforelectrontransferandenergytransferdrivenreactions' class='gray_back'><strong>[671] Trifluoromethylated thermally activated delayed fluorescence molecule as a versatile photocatalyst for electron-transfer- and energy-transfer-driven reactions<\/strong><br \/>Tatsuya Morofuji, Takuma Kurokawa, Youhei Chitose, Chihaya Adachi, Naokazu Kano<br \/>\n<i>Organic & Biomolecular Chemistry<\/i>, <strong>20<\/strong>, 9600 - 9603, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D2OB02055F' target='_blank'>https:\/\/doi.org\/10.1039\/D2OB02055F<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#controlofemissiondiffractionanglesandlaserthresholdinmixedordersampleddistributedfeedbacklaserwithorganicgainmedia2' class='gray_back'><strong>[670] Control of emission diffraction angles and laser threshold in mixed-order sampled distributed feedback laser with organic gain media<\/strong><br \/>Hyun Suk Park, Sahar Alasvand Yazdani, Fatima Bencheikh, Ryutaro Komatsu, Shiyoshi Yokoyama, Takuro Kamiya, Chihaya Adachi<br \/>\n<i>Journal of Applied Physics<\/i>, <strong>132<\/strong>, 203101, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/5.0123476' target='_blank'>https:\/\/doi.org\/10.1063\/5.0123476<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#solventdependentdualemissionprocessesinchargetransferexcitedstatesofphenothiazinetriphenyltriazineconformers' class='gray_back'><strong>[669] Solvent-dependent dual emission processes in charge-transfer excited states of phenothiazine-triphenyltriazine conformers<\/strong><br \/>Tomohiro Ryu, Kiyoshi Miyata, Masaki Saigo, Yuushi Shimoda, Youichi Tsuchiya, Hajime Nakanotani, Chihaya Adachi, Ken Onda<br \/>\n<i>Chemical Physics Letters<\/i>, <strong>809<\/strong>, 140155, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.cplett.2022.140155' target='_blank'>https:\/\/doi.org\/10.1016\/j.cplett.2022.140155<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#correlatingexcitondynamicsofthermallyactivateddelayedfluorescenceemitterstoefficiencyrolloffinoleds' class='gray_back'><strong>[668] Correlating Exciton Dynamics of Thermally Activated Delayed-Fluorescence Emitters to Efficiency Roll-Off in OLEDs<\/strong><br \/>Monirul Hasan, Atul Shukla, Masashi Mamada, Chihaya Adachi, Shih-Chun Lo, Ebinazar B. Namdas<br \/>\n<i>Physical Review Applied<\/i>, <strong>18<\/strong>, 54082, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1103\/PhysRevApplied.18.054082' target='_blank'>https:\/\/doi.org\/10.1103\/PhysRevApplied.18.054082<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#aconvenientmethodtoestimateglasstransitiontemperatureofsmallorganicsemiconductormaterials' class='gray_back'><strong>[667] A convenient method to estimate glass transition temperature of small organic semiconductor materials<\/strong><br \/>Youichi Tsuchiya, Nozomi Nakamura, Shunta Kakumachi, Keiko Kusuhara, Chin-Yiu Chan, Chihaya Adachi<br \/>\n<i>Chemical Communications<\/i>, <strong>58<\/strong>, 11292 - 11295, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D2CC01467J' target='_blank'>https:\/\/doi.org\/10.1039\/D2CC01467J<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#multipleresonancetypethermallyactivateddelayedfluorescencebydibenzo14azaborinederivatives' class='gray_back'><strong>[666] Multiple resonance type thermally activated delayed fluorescence by dibenzo[1,4]azaborine derivatives<\/strong><br \/>JaeHyun Bae, Mika Sakai, Youichi Tsuchiya, Naoki Ando, Xiankai Chen, Thanh Ba Nguyen, Chin-Yiu Chan, Yi-Ting Lee, Morgan Auffray, Hajime Nakanotani,, Shigehiro Yamaguchi, Chihaya Adachi<br \/>\n<i>Frontiers in Chemistry<\/i>, <strong>10<\/strong>, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.3389\/fchem.2022.990918' target='_blank'>https:\/\/doi.org\/10.3389\/fchem.2022.990918<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#unexpectedroleofholeandelectronblockinginterlayerscontrollingchargecarrierinjectionandtransportintadfbasedblueorganiclightemittingdiodes' class='gray_back'><strong>[665] Unexpected role of hole and electron blocking interlayers controlling charge carrier injection and transport in TADF based blue organic light-emitting diodes<\/strong><br \/>Masashi Mamada, Chihaya Adachi<br \/>\n<i>Applied Physics Letters<\/i>, <strong>121<\/strong>, 13, 131103, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/5.0100373' target='_blank'>https:\/\/doi.org\/10.1063\/5.0100373<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#mechanisticdichotomyinsolventdependentaccesstoevszallylicaminesviadecarboxylativevinylationofaminoacids' class='gray_back'><strong>[664] Mechanistic Dichotomy in Solvent Dependent Access to E vs Z-allylic Amines via Decarboxylative Vinylation of Amino Acids<\/strong><br \/>Samir Manna, Shunta Kakumachi, Kanak Kanti Das, Youichi Tsuchiya, Chihaya Adachi, Santanu \u200bPanda<br \/>\n<i>Chem. Sci.<\/i>, <strong>13<\/strong>, 9678 - 9684, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D2SC02090D' target='_blank'>https:\/\/doi.org\/10.1039\/D2SC02090D<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#twoboronatomsversusonehighperformancedeepbluemultiresonancethermallyactivateddelayedfluorescenceemitters' class='gray_back'><strong>[663] Two Boron Atoms versus One: High-performance Deep-blue Multi-resonance Thermally Activated Delayed Fluorescence Emitters<\/strong><br \/>Chin-Yiu Chan, Subeesh Madayanad Suresh, Yi-Ting Lee, Youichi Tsuchiya, Tomas Matulaitis, David Hall, Alexandra Slawin, Stuart Warriner, David Beljonne, Yoann Olivier, Chihaya Adachi, Eli Zysman-Colman<br \/>\n<i>Chem. Commun.<\/i>, <strong>58<\/strong>, 9377 - 9380, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D2CC03347J' target='_blank'>https:\/\/doi.org\/10.1039\/D2CC03347J<\/a><br \/>[11]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#balancedelectronandholeinjectionandtransportinoledsbyusingtransparentelectrodes' class='gray_back'><strong>[662] Balanced electron and hole injection and transport in OLEDs by using transparent electrodes<\/strong><br \/>Sahar Alasvand Yazdani, Fatima Bencheikh, Ryutaro Komatsu, Amir Mikaeili, Chihaya Adachi<br \/>\n<i>Japanese Journal of Applied Physics<\/i>, <strong>61<\/strong>, 88002, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.35848\/1347-4065\/ac7e96' target='_blank'>https:\/\/doi.org\/10.35848\/1347-4065\/ac7e96<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#manuscripttitlemodulationofintersystemcrossingrateinducedbysinglettripletenergylevelalignmentin1235tetrakiscarbazol9yl46dicyanobenzenesinglecrystal' class='gray_back'><strong>[661] Modulation of intersystem crossing rate induced by singlet-triplet energy level alignment in 1,2,3,5-tetrakis(carbazol-9-yl)-4,6-dicyanobenzene single crystal<\/strong><br \/>Shintaro Kohata, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Chemistry Letters<\/i>, <strong>51<\/strong>, 10, 989 - 992, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.220304' target='_blank'>https:\/\/doi.org\/10.1246\/cl.220304<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#anoverlookedchargetransferinteractionintheinterfacialtriplettripletupconversionprocessinblueorganiclightemittingdiodes' class='gray_back'><strong>[660] An Overlooked Charge-Transfer Interaction in the Interfacial Triplet\u2013Triplet Upconversion Process in Blue Organic Light-Emitting Diodes<\/strong><br \/>Thanh Ba Nguyen, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>10<\/strong>, 18, 2200704, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202200704' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202200704<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#carbazole2carbonitrileasanacceptorindeepbluethermallyactivateddelayedfluorescenceemittersfornarrowingchargetransferemissions' class='gray_back'><strong>[659] Carbazole-2-Carbonitrile as an Acceptor in Deep-Blue Thermally Activated Delayed Fluorescence Emitters for Narrowing Charge-Transfer Emissions<\/strong><br \/>Chin-Yiu Chan, Yi-Ting Lee, Masashi Mamada, Kenichi Goushi, Youichi Tsuchiya, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Chemical Science<\/i>, <strong>13<\/strong>, 7821 - 7828, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D2SC02478K' target='_blank'>https:\/\/doi.org\/10.1039\/D2SC02478K<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#impactofexcitonicandphotoniclossmechanismsonthethresholdandslopeefficiencyoforganicsemiconductorlasers' class='gray_back'><strong>[658] Impact of excitonic and photonic loss mechanisms on the threshold and slope efficiency of organic semiconductor lasers<\/strong><br \/>Alasvand Yazdani, Sahar, Mikaeili, Amir, Bencheikh, Fatima, Adachi, Chihaya<br \/>\n<i>Japanese Journal of Applied Physics<\/i>, <strong>61<\/strong>, 7, 74003, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.35848\/1347-4065\/ac759d' target='_blank'>https:\/\/doi.org\/10.35848\/1347-4065\/ac759d<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#spontaneousformationofmetastableorientationwithwellorganizedpermanentdipolemomentinorganicglassyfilms' class='gray_back'><strong>[657] Spontaneous formation of metastable orientation with well-organized permanent dipole moment in organic glassy films<\/strong><br \/>Masaki Tanaka, Morgan Auffray, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Nature Materials<\/i>, <strong>21<\/strong>, 819 - 825, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41563-022-01265-7' target='_blank'>https:\/\/doi.org\/10.1038\/s41563-022-01265-7<\/a><br \/>[18]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientperovskitelightemittingdiodeswithasiloxaneblendedorganicholetransportlayer' class='gray_back'><strong>[656] Efficient Perovskite Light-Emitting Diodes with A Siloxane-Blended Organic Hole Transport Layer<\/strong><br \/>Toshinori Matsushima, Ryotaro Nasu, Kotaro Takekuma, Tomohiro Ishii, Zhao Feng, Xun Tang, Nozomi Nakamura, Ganbaatar Tumen-Ulzii, Chihaya Adachi<br \/>\n<i>Advanced Photonics Research<\/i>, <strong>3<\/strong>, 10, 2200003, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adpr.202200003' target='_blank'>https:\/\/doi.org\/10.1002\/adpr.202200003<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivateddelayedfluorescencegreenoledwith4500hourslifetimeand20externalquantumefficiencybyoptimizingtheemissionzoneusingasingleemissionspectrumtechnique' class='gray_back'><strong>[655] A Thermally Activated Delayed Fluorescence Green OLED with 4500 h Lifetime and 20% External Quantum Efficiency by Optimizing the Emission Zone using a Single-Emission Spectrum Technique<\/strong><br \/>Rossa Mac Ciarn\u00e1in, Hin Wai Mo, Kaori Nagayoshi, Hiroshi Fujimoto, Kentaro Harada, Robert Gehlhaar, Tung Huei Ke, Paul Heremans, Chihaya Adachi<br \/>\n<i>Advanced Materials<\/i>, <strong>34<\/strong>, 29, 2201409, 2022<br \/>DOI: <a href=' https:\/\/doi.org\/10.1002\/adma.202201409' target='_blank'> https:\/\/doi.org\/10.1002\/adma.202201409<\/a><br \/>[11]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientdeepblueorganiclightemittingdiodesbasedonrationalmoleculardesignanddeviceengineering' class='gray_back'><strong>[654] Highly Efficient Deep-Blue Organic Light-Emitting Diodes Based on Rational Molecular Design and Device Engineering<\/strong><br \/>Masashi Mamada, Hiroshi Katagiri, Chin-Yiu Chan, Yi-Ting Lee, Kenichi Goushi, Hajime Nakanotani, Takuji Hatakeyama, Chihaya Adachi<br \/>\n<i>Advanced Functional Materials<\/i>, <strong>32<\/strong>, 32, 2204352, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.202204352' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.202204352<\/a><br \/>[20]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivateddelayedfluorescencepolydendrimersdetrappingexcitonsforreverseintersystemcrossing' class='gray_back'><strong>[653] Thermally activated delayed fluorescence poly(dendrimer)s \u2013 detrapping excitons for reverse intersystem crossing<\/strong><br \/>Emma V. Puttock, Chandana Sampath Kumara Ranasinghe, Mohammad Babazadeh, Jos C. M. Kistemaker, Junhyuk Jang, Mile Gao, David M. Huang, Chihaya Adachi, Paul L. Burn, Paul E. Shaw<br \/>\n<i>J. Mater. Chem. C<\/i>, <strong>10<\/strong>, 8109 - 8124, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D1TC05151B' target='_blank'>https:\/\/doi.org\/10.1039\/D1TC05151B<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowlightamplificationthresholdandreducedefficiencyrolloffinthickemissivelayeroledsfromadiketopyrrolopyrrolederivative' class='gray_back'><strong>[652] Low Light Amplification Threshold and Reduced Efficiency Roll-Off in Thick Emissive Layer OLEDs from a Diketopyrrolopyrrole Derivative<\/strong><br \/>Atul Shukla, Volter Entoma, Sarah K. M. McGregor, Monirul Hasan, Masashi Mamada, Evan G. Moore, Chihaya Adachi, Shih-Chun Lo, Ebinazar B. Namdas<br \/>\n<i>Macromolecular Rapid Communications<\/i>, <strong>43<\/strong>, 16, 2200115, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/marc.202200115' target='_blank'>https:\/\/doi.org\/10.1002\/marc.202200115<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#synthesiscrystalstructuretropicityandchargetransportpropertiesofdiindenothienothiophenederivatives' class='gray_back'><strong>[651] Synthesis, Crystal Structure, Tropicity and Charge Transport Properties of Diindenothienothiophene Derivatives<\/strong><br \/>Tanguy Jousselin-Oba, Masashi Mamada, Karen Wright, J\u00e9rome Marrot, Chihaya Adachi, Abderrahim Yassar, Michel Frigoli<br \/>\n<i>Journal of Materials Chemistry C<\/i>, <strong>10<\/strong>, 7717 - 7723, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D2TC01324J' target='_blank'>https:\/\/doi.org\/10.1039\/D2TC01324J<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#tailormademultiresonanceterminalemitterstowardsnarrowbandhighefficiencyandstablehyperfluorescenceorganiclightemittingdiodes' class='gray_back'><strong>[650] Tailor-Made Multi-Resonance Terminal Emitters toward Narrowband, High-Efficiency, and Stable Hyperfluorescence Organic Light-Emitting Diodes<\/strong><br \/>Yi-Ting Lee, Chin-Yiu Chan, Masaki Tanaka, Masashi Mamada, Kenichi Goushi, Xun Tang, Youichi Tsuchiya, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>10<\/strong>, 17, 2200682, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202200682' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202200682<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#cibalackrotdendrimersforhyperfluorescentorganiclightemittingdiodes' class='gray_back'><strong>[649] Cibalackrot Dendrimers for Hyperfluorescent Organic Light-Emitting Diodes<\/strong><br \/>Nicholle R. Wallwork, Masashi Mamada, Angus B. Keto, Sarah K. M. McGregor, Atul Shukla, Chihaya Adachi, Elizabeth Krenske, Ebinazar B. Namdas, Shih-Chun Lo<br \/>\n<i>Macromolecular Rapid Communications<\/i>, <strong>43<\/strong>, 16, 2200118, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/marc.202200118' target='_blank'>https:\/\/doi.org\/10.1002\/marc.202200118<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#probingpolaroninducedexcitonquenchingintadfbasedorganiclightemittingdiodes' class='gray_back'><strong>[648] Probing polaron-induced exciton quenching in TADF based organic light-emitting diodes<\/strong><br \/>Monirul Hasan, Siddhartha Saggar, Atul Shukla, Fatima Bencheikh, Jan Sobus, Sarah K. M. McGregor, Chihaya Adachi, Shih-Chun Lo, Ebinazar B. Namdas<br \/>\n<i>Nat Commun<\/i>, <strong>13<\/strong>, 254, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-021-27739-x' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-021-27739-x<\/a><br \/>[28]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#stericmodulationofspirostructureforhighlyefficientmultipleresonanceemitters' class='gray_back'><strong>[647] Steric Modulation of Spiro Structure for Highly Efficient Multiple Resonance Emitters<\/strong><br \/>Yang-Kun Qu, Dong-Ying Zhou, Fan-Cheng Kong, Qi Zheng, Xun Tang, Yuan-Hao Zhu, Chen-Chao Huang, Zi-Qi Feng, Jian Fan, Chihaya Adachi, Liang-Sheng Liao, Zuo-Quan Jiang<br \/>\n<i>Angewandte Chemie<\/i>, <strong>61<\/strong>, 22, e202201886, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202201886' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202201886<\/a><br \/>[51]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#performanceanalysisofaperovskitebasedthingtothingopticalwirelesspowertransfersystem' class='gray_back'><strong>[646] Performance Analysis of A Perovskite-based Thing-to-thing Optical Wireless Power Transfer System<\/strong><br \/>Dinh Hoa Nguyen, Ganbaatar Tumen-Ulzii, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>IEEE Photonics Journal<\/i>, <strong>14<\/strong>, 1, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1109\/JPHOT.2022.3146365' target='_blank'>https:\/\/doi.org\/10.1109\/JPHOT.2022.3146365<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highperformancesolutionprocessedredhyperfluorescentoledsbasedoncibalackrot' class='gray_back'><strong>[645] High-performance solution-processed red hyperfluorescent OLEDs based on cibalackrot<\/strong><br \/>Nicholle R. 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McGregor, Chihaya Adachi, Ebinazar Namdas, Shih-Chun Lo<br \/>\n<i>Journal of Materials Chemistry C<\/i>, <strong>10<\/strong>, 4767 - 4774, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D1TC04937B' target='_blank'>https:\/\/doi.org\/10.1039\/D1TC04937B<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#significantroleoftripletspinstateforexcitondissociationinorganicsolids' class='gray_back'><strong>[644] Significant role of triplet spin state for exciton dissociation in organic solids<\/strong><br \/>Takahiko Yamanaka, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Science Advances<\/i>, <strong>8<\/strong>, 9, 2022<br \/>DOI: <a href='https:\/\/doi.org\/10.1126\/sciadv.abj9188' target='_blank'>https:\/\/doi.org\/10.1126\/sciadv.abj9188<\/a><br \/>[11]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#numericalstudyoftripletdynamicsinorganicsemiconductorsunderlasingandthetripletmanagementbytadfaimingforcontinuouslasing' class='gray_back'><strong>[643] Numerical Study of Triplet Dynamics in Organic Semiconductors Aimed for the Active Utilization of Triplets by TADF under Continuous-Wave Lasing<\/strong><br \/>Ayano Abe, Kenichi Goushi, Atula S. D. Sandanayaka, Ryutaro Komatsu, Takashi Fujihara, Masashi Mamada, Chihaya Adachi<br \/>\n<i>The Journal of Physical Chemistry Letters<\/i>, <strong>13<\/strong>, 5, 1323 - 1329, 2022<br \/>DOI: <a href=' https:\/\/doi.org\/10.1021\/acs.jpclett.1c03983' target='_blank'> https:\/\/doi.org\/10.1021\/acs.jpclett.1c03983<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2021'>2021<\/h4><div rel='#hotexciplexesinushapedtadfmoleculeswithemissionfromlocallyexcitedstates' class='gray_back'><strong>[642] Hot exciplexes in U-shaped TADF molecules with emission from locally excited states<\/strong><br \/>A. Lennart Schleper, Kenichi Goushi, Christoph Bannwarth, Bastian Haehnle, Philipp J. Welscher, Chihaya Adachi, Alexander J. C. Kuehne<br \/>\n<i>Nature Communications<\/i>, <strong>12<\/strong>, 6179, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-021-26439-w' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-021-26439-w<\/a><br \/>[20]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organiclongpersistentluminescencestimulatedbyvisiblelightinptypesystemsbasedonorganicphotoredoxcatalystdopants' class='gray_back'><strong>[641] Organic long-persistent luminescence stimulated by visible light in p-type systems based on organic photoredox catalyst dopants<\/strong><br \/>Kazuya Jinnai, Ryota Kabe, Zesen Lin, Chihaya Adachi<br \/>\n<i>Nature Materials<\/i>, <strong>21<\/strong>, 338 - 344, 2021<br \/>DOI: <a href=' https:\/\/doi.org\/10.1038\/s41563-021-01150-9' target='_blank'> https:\/\/doi.org\/10.1038\/s41563-021-01150-9<\/a><br \/>[68]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficiencyofthermallyactivateddelayedfluorescencesensitizedtripletupconversiondoubledinthreecomponentsystem' class='gray_back'><strong>[640] Efficiency of Thermally Activated Delayed Fluorescence Sensitized Triplet Upconversion Doubled in Three-Component System<\/strong><br \/>Brett Yurash, Alana Dixon, Carolina Espinoza, Alexander Mikhailovsky, Sangmin Chae, Hajime Nakanotani, Chihaya Adachi, Thuc-Quyen Nguyen<br \/>\n<i>Advanced Materials<\/i>, <strong>34<\/strong>, 5, 2103976, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.202103976' target='_blank'>https:\/\/doi.org\/10.1002\/adma.202103976<\/a><br \/>[11]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#managingintersegmentalchargetransferandmultipleresonancealignmentsofd3atypedtadfemittersforredoledswithimprovedefficiencyandcolorpurity' class='gray_back'><strong>[639] Managing Intersegmental Charge-Transfer and Multiple Resonance Alignments of D3-A Typed TADF Emitters for Red OLEDs with Improved Efficiency and Color Purity<\/strong><br \/>Xiao-Chun Fan, Kai Wang, Yi-Zhong Shi, Jia-Xiong Chen, Feng Huang, Hui Wang, Ya-Nan Hu, Youichi Tsuchiya, Xue-Mei Ou, Jia Yu, Chihaya Adachi, Xiao-Hong Zhang<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>10<\/strong>, 3, 2101789, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202101789' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202101789<\/a><br \/>[21]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientnear%e2%80%90infraredelectrofluorescencefromathermally%e2%80%90activateddelayedfluorescencemolecule' class='gray_back'><strong>[638] Highly Efficient Near\u2010Infrared Electrofluorescence from a Thermally\u2010Activated Delayed Fluorescence Molecule<\/strong><br \/>Umamahesh Balijapalli, Ryo Nagata, Nishiki Yamada, Hajime Nakanotani, Masaki Tanaka, Anthony D\u2019Al\u00e9o, Virginie Placide, Masashi Mamada, Youichi Tsuchiya, Chihaya Adachi<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>60<\/strong>, 15, 8477 - 8482, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202016089' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202016089<\/a><br \/>[106]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#correlatedtripletpairformationactivatedbygeometryrelaxationindirectlylinkedtetracenedimer55%e2%80%b2bitetracene' class='gray_back'><strong>[637] Correlated Triplet Pair Formation Activated by Geometry Relaxation in Directly Linked Tetracene Dimer (5,5\u2032-Bitetracene)<\/strong><br \/>Katsuyuki Shizu, Chihaya Adachi, Hironori Kaji<br \/>\n<i>ACS Omega<\/i>, <strong>6<\/strong>, 4, 2638 - 2643, 2021<br \/>DOI: <a href=' https:\/\/doi.org\/10.1021\/acsomega.0c04809' target='_blank'> https:\/\/doi.org\/10.1021\/acsomega.0c04809<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#improvedperformanceofperovskitesolarcellsbysuppressingtheenergylevelshiftofthepedotpssholetransportlayer' class='gray_back'><strong>[636] Improved Performance of Perovskite Solar Cells by Suppressing the Energy-Level Shift of the PEDOT:PSS Hole Transport Layer<\/strong><br \/>Masayuki Yahiro, Shun Sugawara, Shinichi Maeda, Yuko Shimoi, Pangpang Wang, Shin-ichiro Kobayashi, Kotaro Takekuma, Ganbaatar Tumen-Ulzii, Chuanjiang Qin, Toshinori Matsushima, Tadayuki Isaji, Yoshinori Kasai, Takashi Fujihara, Chihaya Adachi<br \/>\n<i>ACS Applied Energy Materials<\/i>, <strong>4<\/strong>, 12, 14590 - 14598, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsaem.1c03213' target='_blank'>https:\/\/doi.org\/10.1021\/acsaem.1c03213<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowthresholdexcitonpolaritoncondensationviafastpolaritonrelaxationinorganicmicrocavities' class='gray_back'><strong>[635] Low-threshold exciton-polariton condensation via fast polariton relaxation in organic microcavities<\/strong><br \/>Tomohiro Ishii, Kiyoshi Miyata, Masashi Mamada, Fatima Bencheikh, Fabrice Mathevet, Ken Onda, St\u00e9phane K\u00e9na-Cohen, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>10<\/strong>, 3, 2102034, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202102034' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202102034<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#synthesisaromaticityandapplicationofperipentacenopentacenelocalizedrepresentationofbenzenoidaromaticcompounds' class='gray_back'><strong>[634] Synthesis, Aromaticity and Application of peri-PentacenoPentacene: Localized Representation of Benzenoid Aromatic Compounds<\/strong><br \/>Tanguy Jousselin-Oba, Masashi Mamada, Karen Wright, J\u00e9rome Marrot, Chihaya Adachi, Abderrahim Yassar, Michel Frigoli<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>61<\/strong>, 1, e202112794, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202112794' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202112794<\/a><br \/>[21]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#developingefficientdinuclearptiicomplexesbasedonthetriphenylaminecoreforhighefficiencysolutionprocessedoleds' class='gray_back'><strong>[633] Developing Efficient Dinuclear Pt(II) Complexes Based on the Triphenylamine Core for High-Efficiency Solution-Processed OLEDs<\/strong><br \/>Yuanhui Sun, Bochen Liu, Yue Guo, Xi Chen, Yi-Ting Lee, Zhao Feng, Chihaya Adachi, Guijiang Zhou, Zhao Chen, Xiaolong Yang<br \/>\n<i>ACS Appl. Mater. Interfaces<\/i>, <strong>13<\/strong>, 30, 36020 - 36032, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsami.1c06148' target='_blank'>https:\/\/doi.org\/10.1021\/acsami.1c06148<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#recyclingoftripletsintosingletsforhighperformanceorganiclasers' class='gray_back'><strong>[632] Recycling of Triplets into Singlets for High-Performance Organic Lasers<\/strong><br \/>Chathuranganie A. M. Senevirathne, Seiya Yoshida, Morgan Auffray, Masayuki Yahiro, Buddhika S. B. Karunathilaka, Fatima Bencheikh, Kenichi Goushi, Atula S. D. Sandanayaka, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>10<\/strong>, 1, 2101302, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202101302' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202101302<\/a><br \/>[13]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#advancedorganiclasersystemhavingtripletscavengers2' class='gray_back'><strong>[631] Advanced Organic Laser System Having Triplet Scavengers<\/strong><br \/>Buddhika S.B. KARUNATHILAKA, Umamahesh BALIJAPALLI, Toshinori MATSUSHIMA, Atula S.D. SANDANAYAKA, Chihaya ADACHI<br \/>\n<i>Journal of the Imaging Society of Japan<\/i>, <strong>60<\/strong>, 6, 615 - 630, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.11370\/isj.60.615' target='_blank'>https:\/\/doi.org\/10.11370\/isj.60.615<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#visualizationoffrontiermolecularorbitalseparationofasinglethermallyactivateddelayedfluorescenceemitterbystm' class='gray_back'><strong>[630] Visualization of Frontier Molecular Orbital Separation of a Single Thermally Activated Delayed Fluorescence Emitter by STM<\/strong><br \/>Inhae Zoh, Miyabi Imai-Imada, Jaehyun Bae, Hiroshi Imada, Youichi Tsuchiya, Chihaya Adachi, Yousoo Kim<br \/>\n<i>J. Phys. Chem. Lett.<\/i>, <strong>12<\/strong>, 31, 7512 - 7518, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpclett.1c02140' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpclett.1c02140<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#26dicarbonitrilediphenyl1%ce%bb5phosphininedcnparobustconjugatedbuildingblockformultifunctionaldyesexhibitingtunableamplifiedspontaneousemission' class='gray_back'><strong>[629] 2,6-Dicarbonitrile Diphenyl-1\u03bb<sup>5<\/sup>-Phosphinine (DCNP)\u2014A Robust Conjugated Building Block for Multi-Functional Dyes Exhibiting Tunable Amplified Spontaneous Emission<\/strong><br \/>Umamahesh Balijapalli, Xun Tang, Daichi Okada, Yi-Ting Lee, Buddhika S. B. Karunathilaka, Morgan Auffray, Ganbaatar Tumen-Ulzii, Youichi Tsuchiya, Atula S. D. Sandanayaka, Toshinori Matsushima, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>9<\/strong>, 21, 2101122, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202101122' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202101122<\/a><br \/>[10]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#characterizingconformationaldistributioninamorphousfilmoforganicemitteranditsapplicationinselfdopingorganiclightemittingdiode' class='gray_back'><strong>[628] Characterizing Conformational Distribution in Amorphous Film of Organic Emitter and Its Application in \u201cSelf-Doping\u201d Organic Light-Emitting Diode<\/strong><br \/>Yi-Zhong Shi, Kai Wang, Shao-Li Zhang, Xiao-Chun Fan, Youichi Tsuchiya, Yi-Ting Lee, Gao-Le Dai, Jia-Xiong Chen, Cai-Jun Zheng, Shi-Yun Xiong, Xue-Mei Ou, Jia Yu, Jian-Sheng Jie, Chun-Sing Lee, Chihaya Adachi; Xiao-Hong Zhang<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>60<\/strong>, 49, 25878 - 25883, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202108943' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202108943<\/a><br \/>[24]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#deepbluefluorescentmaterialwithanextremelyhighratioofhorizontalorientationtoenhancelightoutcouplingefficiency44andexternalquantumefficiencyindopedandnondopedorganiclight' class='gray_back'><strong>[627] Deep Blue Fluorescent Material with an Extremely High Ratio of Horizontal Orientation to Enhance Light Outcoupling Efficiency (44%) and External Quantum Efficiency in Doped and Non-Doped Organic Light-Emitting Diodes<\/strong><br \/>Jian Haur Lee, Hung-Yi Lin, Chia-Hsun Chen, Yi-Ting Lee, Tien-Lung Chiu, Jiun-Haw Lee, Chin-Ti Chen, Chihaya Adachi<br \/>\n<i>ACS Appl. Mater. Interfaces<\/i>, <strong>13<\/strong>, 29, 34605 - 34615, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsami.1c07859' target='_blank'>https:\/\/doi.org\/10.1021\/acsami.1c07859<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#exactsolutionofkineticanalysisforthermallyactivateddelayedfluorescencematerials' class='gray_back'><strong>[626] Exact Solution of Kinetic Analysis for Thermally Activated Delayed Fluorescence Materials<\/strong><br \/>Youichi Tsuchiya, Stefan Diesing, Fatima Bencheikh, Yoshimasa Wada, Paloma L. dos Santos, Hironori Kaji, Eli Zysman-Colman, Ifor D. W. Samuel, Chihaya Adachi<br \/>\n<i>The Journal of Physical Chemistry A<\/i>, <strong>125<\/strong>, 36, 8074 - 8089, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpca.1c04056' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpca.1c04056<\/a><br \/>[29]:Number of citation <br \/><font color=\"red\">Supplementary Cover\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"https:\/\/pubs.acs.org\/toc\/jpcafh\/125\/36\">ACS<\/a><font color=\"red\">--September 2021<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#directobservationofphotoexcitedelectrondynamicsinorganicsolidexhibitingthermallyactivateddelayedfluorescencebytimeresolvedphotoelectronemissionmicroscopy' class='gray_back'><strong>[625] Direct Observation of Photoexcited Electron Dynamics in Organic Solids Exhibiting Thermally Activated Delayed Fluorescence via Time-Resolved Photoelectron Emission Microscopy<\/strong><br \/>Yusuke Fukami, Masato Iwasawa, Masahiro Sasaki, Takuya Hosokai, Hajime Nakanotani, Chihaya Adachi, Keiki Fukumoto, Yoichi Yamada<br \/>\n<i>Adv. Opt. Mater.<\/i>, <strong>9<\/strong>, 19, 2100619, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202100619' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202100619<\/a><br \/>[4]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electronaffinitysubstituentin26dicarbonitrilediphenyl1%ce%bb5phosphininedcnptowardshighqualityorganiclasingandelectroluminescenceunderhighcurrentinjection' class='gray_back'><strong>[624] Electron-Affinity Substituent in 2,6-Dicarbonitrile Diphenyl-1\u03bb5-Phosphinine (DCNP) Towards High-Quality Organic Lasing and Electroluminescence under High Current Injection<\/strong><br \/>Xun Tang, Umamahesh Balijapalli, Daichi Okada, Buddhika S. B. Karunathilaka, Chathuranganie A. M. Senevirathne, Yi-Ting Lee, Zhao Feng, Atula S. D. Sandanayaka, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Advanced Functional Materials<\/i>, <strong>31<\/strong>, 43, 2104529, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.202104529' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.202104529<\/a><br \/>[9]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organicphotostimulatedluminescenceassociatedwithpersistentspincorrelatedradicalpairs' class='gray_back'><strong>[623] Organic photostimulated luminescence associated with persistent spin-correlated radical pairs<\/strong><br \/>Manabu Sakurai, Ryota Kabe, Masaaki Fuki, Zesen Lin, Kazuya Jinnai, Yasuhiro Kobori, Chihaya Adachi, Takashi Tachikawa<br \/>\n<i>Communications Materials<\/i>, <strong>2<\/strong>, 74, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s43246-021-00178-3' target='_blank'>https:\/\/doi.org\/10.1038\/s43246-021-00178-3<\/a><br \/>[4]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#activecontrolofspontaneousorientationpolarizationoftris8hydroxyquinolinatoaluminumalq3filmsanditseffectonperformanceoforganiclightemittingdiodes' class='gray_back'><strong>[622] Active Control of Spontaneous Orientation Polarization of Tris(8-hydroxyquinolinato)aluminum (Alq3) Films and Its Effect on Performance of Organic Light-Emitting Diodes<\/strong><br \/>Yu Esaki, Masaki Tanaka, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Advanced Electronic Materials<\/i>, <strong>7<\/strong>, 9, 2100486, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/aelm.202100486' target='_blank'>https:\/\/doi.org\/10.1002\/aelm.202100486<\/a><br \/>[16]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancedlightmatterinteractionandpolaritonrelaxationbythecontrolofmolecularorientation' class='gray_back'><strong>[621] Enhanced Light\u2013Matter Interaction and Polariton Relaxation by the Control of Molecular Orientation<\/strong><br \/>Tomohiro Ishii, Fatima Bencheikh, S\u00e9bastien Forget, S\u00e9bastien Ch\u00e9nais, Benoit Heinrich, David Kreher, Lydia Sosa Vargas, Kiyoshi Miyata, Ken Onda, Takashi Fujihara, St\u00e9phane K\u00e9na-Cohen, Fabrice Mathevet, Chihaya. Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>9<\/strong>, 22, 2101048, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202101048' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202101048<\/a><br \/>[13]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#tetrabenzoacphenazinebackboneforhighlyefficientorangeredthermallyactivateddelayedfluorescencewithcompletelyhorizontalmolecularorientation' class='gray_back'><strong>[620] Tetrabenzo[a,c]phenazine backbone for highly efficient orange-red thermally-activated delayed fluorescence with completely horizontal molecular orientation<\/strong><br \/>Umamahesh Balijapalli, Yi-Ting Lee, Buddhika S. B. Karunathilaka, Ganbaatar Tumen-Ulzii, Morgan Auffray, Youichi Tsuchiya, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>60<\/strong>, 35, 19364 - 19373, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202106570' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202106570<\/a><br \/>[54]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#anelementsubstitutedcyclobutadieneexhibitinghighenergybluephosphorescence' class='gray_back'><strong>[619] An Element-Substituted Cyclobutadiene Exhibiting High-Energy Blue Phosphorescence<\/strong><br \/>Yoshiaki Shoji, Yasuhiro Ikabata, Ivan Rhyzhii, Rabia Ayub, Ouissam El Bakouri, Taiga Sato, Qi Wang, Tomoaki Miura, Buddhika S. B. Karunathilaka, Youichi Tsuchiya, Chihaya Adachi, Henrik Ottosson, Hiromi Nakai, Tadaaki Ikoma, Takanori Fukushima<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>60<\/strong>, 40, 21817 - 21823, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202106490' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202106490<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#synthesisofheptaceneanditshole%e2%80%90transferpropertyofstablethinfilms' class='gray_back'><strong>[618] Heptacene: Synthesis and Its Hole-Transfer Property in Stable Thin Films<\/strong><br \/>Takaaki Miyazaki, Motonori Watanabe, Toshinori Matsushima, Ching-Ting Chien, Chihaya Adachi, Shih-Sheng Sun, Hiroyuki Furuta, Tahsin J. Chow<br \/>\n<i>Chemistry - A European Journal<\/i>, <strong>27<\/strong>, 41, 10677 - 10684, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/chem.202100936' target='_blank'>https:\/\/doi.org\/10.1002\/chem.202100936<\/a><br \/>[8]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivatedprocessesinanorganiclongpersistentluminescentsystem' class='gray_back'><strong>[617] Thermally activated processes in an organic long-persistent luminescence system<\/strong><br \/>Kazuya Jinnai, Naohiro Nishimura, Chihaya Adachi, Ryota Kabe<br \/>\n<i>Nanoscale<\/i>, <strong>13<\/strong>, 8412 - 8417, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D0NR09227D' target='_blank'>https:\/\/doi.org\/10.1039\/D0NR09227D<\/a><br \/>[9]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#towardsthingtothingopticalwirelesspowertransfermetalhalideperovskitetransceiverasanenabler' class='gray_back'><strong>[616] Toward Thing-to-Thing Optical Wireless Power Transfer: Metal Halide Perovskite Transceiver as an Enabler<\/strong><br \/>Dinh Hoa Nguyen, Chuanjiang Qin, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Frontiers in Energy Research<\/i>, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.3389\/fenrg.2021.679125' target='_blank'>https:\/\/doi.org\/10.3389\/fenrg.2021.679125<\/a><br \/>[8]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#energytransferinpea2fan1pbnbr3n1quasi2dperovskites' class='gray_back'><strong>[615] Energy transfer in (PEA)<sub>2<\/sub>FA<sub>n-1<\/sub>Pb<sub>n<\/sub>Br<sub>3n+1<\/sub> quasi-2D perovskites<\/strong><br \/>D\u017eiugas Litvinas, Ram\u016bnas Aleksiej\u016bnas, Patrik \u0160\u010dajev, Paulius Baronas, Vaiva Sori\u016bt\u0117, Chuanjiang Qin, Takashi Fujihara, Toshinori Matsushima, Chihaya Adachi, Saulius Jur\u0161\u0117nas<br \/>\n<i>Journal of Materials Chemistry C<\/i>, <strong>9<\/strong>, 4782 - 4791, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D1TC00422K' target='_blank'>https:\/\/doi.org\/10.1039\/D1TC00422K<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#markedlyimprovedperformanceofopticallypumpedorganiclaserswithtwodimensionaldistributedfeedbackgratings' class='gray_back'><strong>[614] Markedly Improved Performance of Optically Pumped Organic Lasers with Two-Dimensional Distributed-Feedback Gratings<\/strong><br \/>Chathuranganie A. M. Senevirathne, Atula S.D. Sandanayaka, Buddhika S.B. Karunathilaka, Takashi Fujihara, Fatima Bencheikh, Chuanjiang Qin, Kenichi Goushi, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>ACS photonics<\/i>, <strong>8<\/strong>, 5, 1324 - 1334, 2021<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/acsphotonics.0c01728 ' target='_blank'>http:\/\/dx.doi.org\/10.1021\/acsphotonics.0c01728 <\/a><br \/>[14]:Number of citation <br \/><font color=\"red\">Cover\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2021\/05\/apchd5_v008i005-3-scaled.jpg\">ACS Photonics<\/a><font color=\"red\">--May 2021<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#unintentionalpassivationof4tertbutylpyridineforimprovedefficiencyanddecreasedoperationalstabilityofperovskitesolarcells' class='gray_back'><strong>[613] Unintentional passivation of 4-tertbutyl pyridine for improved efficiency and decreased operational stability of perovskite solar cells<\/strong><br \/>Ganbaatar Tumen-Ulzii, Morgan Auffray, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Applied Physics Letters<\/i>, <strong>118<\/strong>, 241603, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/5.0051527' target='_blank'>https:\/\/doi.org\/10.1063\/5.0051527<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#amplifiedspontaneousemissionfromoligopphenylenevinylenederivatives' class='gray_back'><strong>[612] Amplified spontaneous emission from oligo (p-phenylenevinylene) derivatives<\/strong><br \/>Masashi Mamada, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Materials Advances<\/i>, <strong>2<\/strong>, 3906 - 3914, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D0MA00756K' target='_blank'>https:\/\/doi.org\/10.1039\/D0MA00756K<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#investigatinghomoenergylevelsofterminalemittersforrealizinghighbrightnessandstabletadfassistedfluorescenceorganiclightemittingdiodes' class='gray_back'><strong>[611] Investigating HOMO Energy Levels of Terminal Emitters for Realizing High-Brightness and Stable TADF-Assisted Fluorescence Organic Light-Emitting Diodes<\/strong><br \/>Yi-Ting Lee, Chin-Yiu Chan, Masaki Tanaka, Masashi Mamada, Umamahesh Balijapalli, Youichi Tsuchiya, Hajime Nakanotani, Takuji Hatakeyama, Chihaya Adachi<br \/>\n<i>Advanced Electronic Materials<\/i>, <strong>7<\/strong>, 4, 2001090, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/aelm.202001090' target='_blank'>https:\/\/doi.org\/10.1002\/aelm.202001090<\/a><br \/>[40]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#planarandrigidpyrazinebasedtadfemitterfordeepbluebrightorganiclightemittingdiodes' class='gray_back'><strong>[610] Planar and Rigid Pyrazine\u2010Based TADF Emitter for Deep Blue Bright Organic Light\u2010Emitting Diodes<\/strong><br \/>Pachaiyappan Rajamalli, Dongyang Chen, Subeesh Madayanad Suresh, Youichi Tsuchiya, Chihaya Adachi, Eli Zysman-Colman<br \/>\n<i>EurJOC<\/i>, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/ejoc.202100086' target='_blank'>https:\/\/doi.org\/10.1002\/ejoc.202100086<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivateddelayedfluorescenceforlightemittingdevices2' class='gray_back'><strong>[609] Thermally-activated delayed fluorescence for light-emitting devices<\/strong><br \/>Hajime Nakanotani, Youichi Tsuchiya, Chihaya Adachi<br \/>\n<i>Chemistry Letters<\/i>, <strong>50<\/strong>, 5, 938 - 948, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.200915' target='_blank'>https:\/\/doi.org\/10.1246\/cl.200915<\/a><br \/>[75]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivateddelayedfluorescencepropertiesoftrioxoazatriangulenederivativesmodifiedwithelectrondonatinggroups' class='gray_back'><strong>[608] Thermally Activated Delayed Fluorescence Properties of Trioxoazatriangulene Derivatives Modified with Electron Donating Groups<\/strong><br \/>Youichi Tsuchiya, Yuma Ishikawa, Sang-Hoon Lee, Xian-Kai Chen, Jean-Luc Br\u00e9das, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>9<\/strong>, 14, 2002174, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202002174' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202002174<\/a><br \/>[31]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#synthesiscrystalstructureandchargetransportcharacteristicsofstableperitetraceneanalogues' class='gray_back'><strong>[607] Synthesis, crystal structure and charge transport characteristics of stable peri-tetracene analogues<\/strong><br \/>Masashi Mamada, Ryota Nakamura, Chihaya Adachi<br \/>\n<i>Chemical Science<\/i>, <strong>12<\/strong>, 552 - 558, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D0SC04699J' target='_blank'>https:\/\/doi.org\/10.1039\/D0SC04699J<\/a><br \/>[12]:Number of citation <br \/><font color=\"red\">Inside Front Cover\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"https:\/\/pubs.rsc.org\/en\/content\/articlelanding\/2021\/sc\/d1sc90007b#!divAbstract\"> Chemical Science<\/a><font color=\"red\">--January 2021<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#anelectron%e2%80%90acceptingaza%e2%80%90bodipy%e2%80%90baseddonoracceptordonorarchitectureforbrightniremission' class='gray_back'><strong>[606] An Electron\u2010Accepting aza\u2010BODIPY\u2010Based Donor\u2013Acceptor\u2013Donor Architecture for Bright NIR Emission<\/strong><br \/>Yuto Kage, Seongsoo Kang, Shigeki Mori, Masashi Mamada, Chihaya Adachi, Dongho Kim, Hiroyuki Furuta, Soji Shimizu<br \/>\n<i>Chem. Eur. J.<\/i>, <strong>27<\/strong>, 16, 5259 - 5267, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/chem.202005360' target='_blank'>https:\/\/doi.org\/10.1002\/chem.202005360<\/a><br \/>[30]:Number of citation <br \/><font color=\"red\">Very Important Paper\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photoactiveorganicinorganichybridmaterialswithnanosegregateddonor%e2%80%90acceptorarrays' class='gray_back'><strong>[605] Photoactive Organic\/Inorganic Hybrid Materials with Nanosegregated Donor\u2010Acceptor Arrays<\/strong><br \/>Xiaolei Zhu, Cheriehan Hessin, Aude Salam\u00e9, Lydia Sosa-Vargas, David Kreher, Chihaya Adachi, Anna Proust, Pierre Mialane, J\u00e9rome Marrot, Aude Bouchet, Michel Sliwa, St\u00e9phane M\u00e9ry, Beno\u00eet Heinrich, Fabrice Mathevet, Guillaume Izzet<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>60<\/strong>, 15, 8419 - 8424, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.202014319' target='_blank'>https:\/\/doi.org\/10.1002\/anie.202014319<\/a><br \/>[11]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#advantagesofnaphthaleneasbuildingblockfororganicsolidstatelaserdyessmallerenergygapsandenhancedstability' class='gray_back'><strong>[604] Advantages of naphthalene as building block for organic solid state laser dyes: Smaller energy gaps and enhanced stability<\/strong><br \/>Yuya Oyama, Masashi Mamada, Akihiro Kondo, Chihaya Adachi<br \/>\n<i>Journal of Materials Chemistry C<\/i>, <strong>9<\/strong>, 4112 - 4118, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D0TC05387B' target='_blank'>https:\/\/doi.org\/10.1039\/D0TC05387B<\/a><br \/>[3]:Number of citation <br \/><font color=\"red\">Cover\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2021\/04\/TC009012_OFC_PUBLICITY.pdf\">Journal of Materials Chemistry C<\/a><font color=\"red\">--March 2021<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#intramolecularlockedhighefficiencyultrapurevioletblueciey' class='gray_back'><strong>[603] Intramolecular\u2010Locked High Efficiency Ultrapure Violet\u2010Blue (CIE\u2010y <0.046) Thermally Activated Delayed Fluorescence Emitters Exhibiting Amplified Spontaneous Emission<\/strong><br \/>Aziz Khan, Xun Tang, Cheng Zhong, Qiang Wang, Sheng-Yi Yang, Fan-Cheng Kong, Shuai Yuan, Atula Sandanayaka, Chihaya Adachi, Zuo-Quan Jiang, Liang-Sheng Liao<br \/>\n<i>Advanced Functional Materials<\/i>, <strong>31<\/strong>, 15, 2009488, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.202009488' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.202009488<\/a><br \/>[74]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#longpersistentluminescencefromanexciplexbasedorganiclightemittingdiode' class='gray_back'><strong>[602] Long-persistent luminescence from an exciplex-based organic light-emitting diode<\/strong><br \/>Shinichi Tan, Kazuya Jinnai, Ryota Kabe, Chihaya Adachi<br \/>\n<i>Advanced Materials<\/i>, <strong>33<\/strong>, 23, 2008844, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.202008844' target='_blank'>https:\/\/doi.org\/10.1002\/adma.202008844<\/a><br \/>[34]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#isotopeeffectofhostmaterialondevicestabilityofthermallyactivateddelayedfluorescenceorganiclightemittingdiodes' class='gray_back'><strong>[601] Isotope Effect of Host Material on Device Stability of Thermally Activated Delayed Fluorescence Organic Light\u2010Emitting Diodes<\/strong><br \/>Xuelong Liu, Chin-Yiu Chan, Fabrice Mathevet, Masashi Mamada, Youichi Tsuchiya, Yi-Ting Lee, Hajime Nakanotani, Shinichiro Kobayashi, Masayuki Shiochi, Chihaya Adachi<br \/>\n<i>Small Science<\/i>, <strong>1<\/strong>, 4, 2000057, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/smsc.202000057' target='_blank'>https:\/\/doi.org\/10.1002\/smsc.202000057<\/a><br \/>[9]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#realizingnearinfraredlaserdyesthroughashiftinexcitedstateabsorption' class='gray_back'><strong>[600] Realizing near-infrared laser dyes through a shift in excited state absorption<\/strong><br \/>Reiko Aoki, Ryutaro Komatsu, Kenichi Goushi, Masashi Mamada, Soo Young Ko, Jeong Weon Wu, Virginie Placide, Anthony D\u2019Al\u00e9o, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>9<\/strong>, 6, 2001947, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202001947' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202001947<\/a><br \/>[20]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#synthesisandcharacterizationof55bitetracene' class='gray_back'><strong>[599] Synthesis and Characterization of 5,5'-Bitetracene<\/strong><br \/>Masashi Mamada, Kenichi Goushi, Ryota Nakamura, Hironori Kaji, Chihaya Adachi<br \/>\n<i>Chemistry Letters<\/i>, <strong>50<\/strong>, 4, 800 - 803, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.200909' target='_blank'>https:\/\/doi.org\/10.1246\/cl.200909<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#stablepurebluehyperfluorescenceorganiclightemittingdiodeswithhighefficiencyandnarrowemission' class='gray_back'><strong>[598] Stable pure-blue hyperfluorescence organic light-emitting diodes with high-efficiency and narrow emission<\/strong><br \/>Chin-Yiu Chan, Masaki Tanaka, Yi-Ting Lee, Yiu-Wing Wong, Hajime Nakanotani, Takuji Hatakeyama, Chihaya Adachi<br \/>\n<i>Nature Photonics<\/i>, <strong>15<\/strong>, 203 - 207, 2021<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41566-020-00745-z' target='_blank'>https:\/\/doi.org\/10.1038\/s41566-020-00745-z<\/a><br \/>[317]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2020'>2020<\/h4><div rel='#highperformanceplanarmicrocavityorganicsemiconductorlasersbasedonthermallyevaporatedtopdistributedbraggreflector' class='gray_back'><strong>[597] High performance planar microcavity organic semiconductor lasers based on thermally evaporated top distributed Bragg reflector<\/strong><br \/>Yongsheng Hu, Fatima Bencheikh, S\u00e9bastien Ch\u00e9nais, S\u00e9bastien Forget, Xingyuan Liu, Chihaya Adachi<br \/>\n<i>Appl. 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Wong, Kazuya Jinnai, Abhishek Kumar Gupta, Ryota Kabe, Chihaya Adachi, Wei Huang, Eli Zysman\u2010Colman, Ifor D. W. Samuel<br \/>\n<i>Advanced Materials<\/i>, <strong>32<\/strong>, 45, 2003911, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.202003911' target='_blank'>https:\/\/doi.org\/10.1002\/adma.202003911<\/a><br \/>[70]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#nearinfraredabsorbingpyrrolopyrroleazabodipybaseddonoracceptorpolymerswithreasonablephotoresponse' class='gray_back'><strong>[593] Near-infrared absorbing pyrrolopyrrole aza-BODIPY-based donor\u2013acceptor polymers with reasonable photoresponse<\/strong><br \/>Ru Feng, Narumi Sato, Mayuka Nomura, Akinori Saeki, Hajime Nakanotani, Chihaya Adachi, Takuma Yasuda, Hiroyuki Furuta, Soji Shimizu<br \/>\n<i>J. Mater. Chem. 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Phys.<\/i>, <strong>153<\/strong>, 204702, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/5.0029608' target='_blank'>https:\/\/doi.org\/10.1063\/5.0029608<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#originandsuppressionofexternalquantumefficiencyrolloffinquasitwodimensionalmetalhalideperovskitelightemittingdiodes' class='gray_back'><strong>[591] Origin and Suppression of External Quantum Efficiency Roll-Off in Quasi-Two-Dimensional Metal Halide Perovskite Light-Emitting Diodes<\/strong><br \/>Satoru Watanabe, Ganbaatar Tumen-Ulzii, Tai Cheng, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. 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N. Mai, Viqar Ahmad, Masashi Mamada, Toshiya Fukunaga, Atul Shukla, Jan Sobus, Gowri Krishnan, Evan G. Moore, Gunther G. Andersson, Chihaya Adachi, Ebinazar B. Namdas, Shih-Chun Lo<br \/>\n<i>Nature Communications<\/i>, <strong>11<\/strong>, 5623, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-020-19443-z' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-020-19443-z<\/a><br \/>[22]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#suppressionofexternalquantumefficiencyrolloffinorganiclightemittingdiodesbyscavengingtripletexcitons' class='gray_back'><strong>[586] Suppression of external quantum efficiency rolloff in organic light emitting diodes by scavenging triplet excitons<\/strong><br \/>Buddhika S. B. Karunathilaka, Umamahesh Balijapalli, Chathuranganie A. M. Senevirathne, Seiya Yoshida, Yu Esaki, Kenichi Goushi, Toshinori Matsushima, Atula S. D. Sandanayaka, Chihaya Adachi<br \/>\n<i>Nat Commun<\/i>, <strong>11<\/strong>, 4926, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-020-18292-0' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-020-18292-0<\/a><br \/>[37]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#theleapfromorganiclightemittingdiodesoledstoorganicsemiconductorlaserdiodesoslds' class='gray_back'><strong>[585] The Leap from Organic Light-Emitting Diodes to Organic Semiconductor Laser Diodes<\/strong><br \/>Chihaya Adachi, Atula S. D. 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N. Mai, Atul Shukla, A. M. Chathuranganie Senevirathne, Ilene Allison, Hyunsoo Lim, Romain J. Lepage, Sarah K. M. McGregor, Michael Wood, Toshinori Matsushima, Evan G. Moore, Elizabeth H. Krenske, Atula S. D. Sandanayaka, Chihaya Adachi, Ebinazar B. Namdas, Shih-Chun Lo<br \/>\n<i>Advanced Optical Materials<\/i>, 2001234, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202001234' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202001234<\/a><br \/>[20]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowamplifiedspontaneousemissionandlasingthresholdsfromhybridsoffluoreneswithvinylphenylcarbazole' class='gray_back'><strong>[580] Low Amplified Spontaneous Emission and Lasing Thresholds from Hybrids of Fluorenes and Vinylphenylcarbazole<\/strong><br \/>Atul Shukla, Van T. N. Mai, A. M. Chathuranganie Senevirathne, Ilene Allison, Sarah K. M. McGregor, Romain J. Lepage, Michael Wood, Toshinori Matsushima, Evan G. Moore, Elizabeth H. Krenske, Atula S. D. Sandanayaka, Chihaya Adachi, Ebinazar B. Namdas, Shih-Chun Lo<br \/>\n<i>Advanced Optical Materials<\/i>, 2000784, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202000784' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202000784<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#stableroomtemperaturecontinuouswavelasinginquasi2dperovskitefilms' class='gray_back'><strong>[579] Stable room-temperature continuous-wave lasing in quasi-2D perovskite films<\/strong><br \/>Chuanjiang Qin, Atula S. D. Sandanayaka, Chenyang Zhao, Toshinori Matsushima, Dezhong Zhang, Takashi Fujihara, Chihaya Adachi<br \/>\n<i>Nature<\/i>, <strong>585<\/strong>, 53 - 57, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41586-020-2621-1' target='_blank'>https:\/\/doi.org\/10.1038\/s41586-020-2621-1<\/a><br \/>[310]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#roleofspontaneousorientationalpolarizationinorganicdonoracceptorblendsforexcitonbinding2' class='gray_back'><strong>[578] Role of Spontaneous Orientational Polarization in Organic Donor\u2013Acceptor Blends for Exciton Binding<\/strong><br \/>Yuuhi Ueda, Hajime Nakanotani, Takuya Hosokai, Yuya Tanaka, Hokuto Hamada, Hisao Ishii, Shuhei Santo, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, 2000896, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202000896' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202000896<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#colortunablelowthresholdamplifiedspontaneousemissionfromyellowtonearinfrarednirbasedondonorspaceracceptorspacerdonorlineardyes' class='gray_back'><strong>[577] Color-Tunable Low-Threshold Amplified Spontaneous Emission from Yellow to Near-Infrared (NIR) Based on Donor\u2013Spacer\u2013Acceptor\u2013Spacer\u2013Donor Linear Dyes<\/strong><br \/>Xun Tang, Yi-Ting Lee, Zhao Feng, Soo Young Ko, Jeong Weon Wu, Virginie Placide, Jean-Charles Ribierre, Anthony D\u2019Al\u00e9o, Chihaya Adachi<br \/>\n<i>ACS Materials Lett.<\/i>, <strong>2<\/strong>, 1567 - 1574, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsmaterialslett.0c00421' target='_blank'>https:\/\/doi.org\/10.1021\/acsmaterialslett.0c00421<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#synthesisandphotochromicbehaviourofaseriesofbenzopyransbearingannphenylcarbazolemoietyphotochromismcontrolbythestericeffect' class='gray_back'><strong>[576] Synthesis and photochromic behaviour of a series of benzopyrans bearing an N-phenyl-carbazole moiety: photochromism control by the steric effect<\/strong><br \/>Michel Frigoli, Tanguy Jousselin-Oba, Masashi Mamada, J\u00e9r\u00f4me Marrot, Agnese Zangarelli, Danilo Pannacci, Chihaya Adachi, Fausto Ortica<br \/>\n<i>Photochemical & Photobiological Sciences<\/i>, <strong>19<\/strong>, 1344 - 1355, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D0PP00202J' target='_blank'>https:\/\/doi.org\/10.1039\/D0PP00202J<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#understandingthedegradationofspiro%e2%80%90ometad%e2%80%90basedperovskitesolarcellsathightemperature' class='gray_back'><strong>[575] Understanding the Degradation of Spiro\u2010OMeTAD\u2010Based Perovskite Solar Cells at High Temperature<\/strong><br \/>Ganbaatar Tumen-Ulzii, Chuanjiang Qin, Toshinori Matsushima, Matthew R. Leyden, Umamahesh Balijipalli, Dino Klotz, Chihaya Adachi<br \/>\n<i>Solar RRL<\/i>, <strong>4<\/strong>, 10, 2000305, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/solr.202000305' target='_blank'>https:\/\/doi.org\/10.1002\/solr.202000305<\/a><br \/>[47]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#surfacesegregationofstarshapedpolyhedraloligomericsilsesquioxaneinpolymermatrix' class='gray_back'><strong>[574] Surface Segregation of Star-Shaped Polyhedral Oligomeric Silsesquioxane in Polymer Matrix<\/strong><br \/>Kentaro Yamamoto, Daisuke Kawaguchi, Tatsuki Abe, Takeshi Komino, Masashi Mamada, Taizo Kabe, Chihaya Adachi, Kensuke Naka, Keiji Tanaka<br \/>\n<i>Langmuir<\/i>, <strong>36<\/strong>, 9960 - 9966, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.langmuir.0c01785' target='_blank'>https:\/\/doi.org\/10.1021\/acs.langmuir.0c01785<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#partialmodificationofelectronwithdrawinggroupsinthermallyactivateddelayedfluorescencematerialsaimedtoimproveefficiencyandstability' class='gray_back'><strong>[573] Partial modification of electron-withdrawing groups in thermally-activated delayed fluorescence materials aimed to improve efficiency and stability<\/strong><br \/>Masayuki Yokoyama, Youichi Tsuchiya, Hajime Nakanotani,, Chihaya Adachi<br \/>\n<i>Chemistry Letters<\/i>, <strong>49<\/strong>, 10, 1189 - 1193, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.200435' target='_blank'>https:\/\/doi.org\/10.1246\/cl.200435<\/a><br \/>[23]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#nanoscaleelectronicpropertiesoftripletstateengineeredhalideperovskites' class='gray_back'><strong>[572] Nanoscale Electronic Properties of Triplet-State-Engineered Halide Perovskites<\/strong><br \/>Ghaida Alosaimi, Chuanjiang Qin, Toshinori Matsushima, Chihaya Adachi, Jan Seidel<br \/>\n<i>The Journal of Physical Chemistry C<\/i>, <strong>124<\/strong>, 27, 14811 - 14817, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpcc.0c03996' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpcc.0c03996<\/a><br \/>[4]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#submicrosecondtadfemissioninddaemitters' class='gray_back'><strong>[571] Sub-Microsecond TADF Emission in D-D\u2019-A Emitters<\/strong><br \/>Morgan Auffray, Umamahesh Balijapalli, Jean-Charles Ribierre, Youichi Tsuchiya, Chihaya Adachi<br \/>\n<i>Chemistry Letters<\/i>, <strong>49<\/strong>, 8, 932 - 935, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.200337' target='_blank'>https:\/\/doi.org\/10.1246\/cl.200337<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#ionmigrationinduceddegradationandefficiencyrolloffinquasi2dperovskitelightemittingdiodes' class='gray_back'><strong>[570] Ion Migration-Induced Degradation and Efficiency Roll-off in Quasi-2D Perovskite Light-Emitting Diodes<\/strong><br \/>Tai Cheng, Ganbaatar Tumen-Ulzii, Dino Klotz, Satoru Watanabe, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>ACS Applied Materials & Interfaces<\/i>, <strong>12<\/strong>, 29, 33004 - 33013, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsami.0c06737' target='_blank'>https:\/\/doi.org\/10.1021\/acsami.0c06737<\/a><br \/>[54]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#effectofvibroniccouplingoncorrelatedtripletpairformationinthesingletfissionprocessoflinkedtetracenedimers' class='gray_back'><strong>[569] Effect of Vibronic Coupling on Correlated Triplet Pair Formation in the Singlet Fission Process of Linked Tetracene Dimers<\/strong><br \/>Katsuyuki Shizu, Chihaya Adachi, Hironori Kaji<br \/>\n<i>The Journal of Physical Chemistry A<\/i>, <strong>124<\/strong>, 18, 3641 - 3651, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpca.0c03041' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpca.0c03041<\/a><br \/>[17]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#hydrogenbondmodulatedmolecularpackinganditsapplicationsinhighperformancenondopedorganicelectroluminescence' class='gray_back'><strong>[568] Hydrogen bond-modulated molecular packing and its applications in high-performance non-doped organic electroluminescence<\/strong><br \/>Yi-Zhong Shi, Kai Wang, Youichi Tsuchiya, Wei Liu, Takeshi Komino, Xiao-Chun Fan, Dianming Sun, Gaole Dai, Jia-Xiong Chen, Ming Zhang, caijun zheng, Shiyun Xiong, Xuemei Ou, Jia Yu, Jiansheng Jie; Chun-Sing Lee; Chihaya Adachi  and  Xiaohong Zhang<br \/>\n<i>Materials Horizons<\/i>, <strong>7<\/strong>, 10, 2734 - 2740, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/D0MH00952K' target='_blank'>https:\/\/doi.org\/10.1039\/D0MH00952K<\/a><br \/>[41]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#moleculardesignbasedondonorweakdonorscaffoldforbluethermallyactivateddelayedfluorescencedesignedbycombinatorialdftcalculations' class='gray_back'><strong>[567] Molecular Design Based on Donor-Weak Donor Scaffold for Blue Thermally-Activated Delayed Fluorescence Designed by Combinatorial DFT Calculations<\/strong><br \/>Yoiuichi Tsuchiya, Keita Tsuji, Ko Inada, Fatima Bencheikh, Yan Geng, H. Shaun Kwak, Thomas J L Mustard, Mathew D Halls, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Frontiers in Chemistry<\/i>, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.3389\/fchem.2020.00403' target='_blank'>https:\/\/doi.org\/10.3389\/fchem.2020.00403<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#fastspinflipenablesefficientandstableorganicelectroluminescencefromchargetransferstates' class='gray_back'><strong>[566] Fast Spin-Flip Enables Efficient and Stable Organic Electroluminescence from Charge-Transfer States<\/strong><br \/>Linsong Cui, Alexander Gillett, Shou-Feng Zhang, Hao Ye, Yuan Liu, Xian-Kai Chen, Emrys W. Evans, William K. Myers, Tanya K. Ronson, Ze-Sen Lin, Hajime Nakanotani, Sebastian Reineke, Jean-Luc Bredas, Chihaya Adachi, Richard Friend<br \/>\n<i>Nature Photonics<\/i>, <strong>14<\/strong>, 636 - 642, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41566-020-0668-z' target='_blank'>https:\/\/doi.org\/10.1038\/s41566-020-0668-z<\/a><br \/>[274]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyeffectivenicotinonitrilederivativesbasedthermallyactivateddelayedfluorescenceemitterwithasymmetricmoleculararchitectureforhighperformanceorganiclightemittingdiodes' class='gray_back'><strong>[565] Highly effective nicotinonitrile-derivatives-based thermally activated delayed fluorescence emitter with asymmetric molecular architecture for high-performance organic light-emitting diodes\u00a0<\/strong><br \/>Shin Hyung Choi, Chan Hee Lee, Chihaya Adachi, Sae Youn Lee<br \/>\n<i>Dyes and Pigments<\/i>, <strong>172<\/strong>, 107849, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.dyepig.2019.107849' target='_blank'>https:\/\/doi.org\/10.1016\/j.dyepig.2019.107849<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#higheqeandhighbrightnesssolutionprocessedtadflightemittingtransistorsandoleds' class='gray_back'><strong>[564] High EQE and high brightness solution-processed TADF light-emitting transistors and OLEDs<\/strong><br \/>Viqar Ahmad, Jan Sobus, Fatima Bencheikh, Masashi Mamada, Chihaya Adachi\u200a, Shih-Chun Lo, Ebinazar B. Namdas<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>8<\/strong>, 18, 2000554, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.202000554' target='_blank'>https:\/\/doi.org\/10.1002\/adom.202000554<\/a><br \/>[18]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#anorganiclaserdyehavingasmallsinglettripletenergygapmakestheselectionofahostmaterialeasier' class='gray_back'><strong>[563] An organic laser dye having a small singlet-triplet energy gap makes the selection of a host material easier<\/strong><br \/>Buddhika S. B. Karunathilaka, Umamahesh Balijapalli, Chathuranganie A. M. Senevirathne, Yu Esaki, Toshinori Matsushima, Atula S. D. Sandanayaka, Chihaya Adachi\u200a<br \/>\n<i>Advanced Functional Materials<\/i>, 2001078, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.202001078' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.202001078<\/a><br \/>[22]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#a1458911hexaazatriphenylenehexacarbonitrilehatcntransportlayerwithhighelectronmobilityforthickorganiclightemittingdiodesaipadvances' class='gray_back'><strong>[562] A 1,4,5,8,9,11-hexaazatriphenylenehexacarbonitrile (HAT-CN) transport layer with high electron mobility for thick organic light-emitting diodes<\/strong><br \/>Kenta Yamaguchi, Toshinori Matsushima, Chihaya Adachi\u200a<br \/>\n<i>AIP Advances<\/i>, <strong>10<\/strong>, 5, 55304, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/5.0007310' target='_blank'>https:\/\/doi.org\/10.1063\/5.0007310<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#hysteresislessandstableperovskitesolarcellswithaselfassembledmonolayer' class='gray_back'><strong>[561] Hysteresis-less and stable perovskite solar cells with a self-assembled monolayer<\/strong><br \/>Ganbaatar Tumen-Ulzii, Toshinori Matsushima, Dino Klotz, Matthew R. Leyden, Pangpang Wang, Chuanjiang Qin, Jin-Wook Lee, Sung-Joon Lee, Yang Yang, Chihaya Adachi\u200a<br \/>\n<i>Communications Materials<\/i>, <strong>1<\/strong>, 31, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s43246-020-0028-z' target='_blank'>https:\/\/doi.org\/10.1038\/s43246-020-0028-z<\/a><br \/>[75]:Number of citation <br \/><font color=\"red\">Collection\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"https:\/\/www.nature.com\/collections\/ijfdijgahh\"> Communications Materials<\/a><font color=\"red\">--February 2021<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancingsmallmoleculeorganicphotodetectorperformanceforreflectancemodephotoplethysmographysensorapplications' class='gray_back'><strong>[560] Enhancing Small-Molecule Organic Photodetector Performance for Reflectance-Mode Photoplethysmography Sensor Applications<\/strong><br \/>Anubha Bilgaiyan, Fahed Elsamnah, Hiroshi Ishidai, Chang-Hoon Shim, Muhamad Affiq Bin Misran, Chihaya Adachi, Reiji Hattori<br \/>\n<i>ACS Applied Electronic Materials<\/i>, <strong>2<\/strong>, 5, 1280 - 1288, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsaelm.0c00082' target='_blank'>https:\/\/doi.org\/10.1021\/acsaelm.0c00082<\/a><br \/>[18]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#excitonexcitonannihilationinthermallyactivateddelayedfluorescenceemitter' class='gray_back'><strong>[559] Exciton-exciton annihilation in thermally activated delayed fluorescence emitter<\/strong><br \/>Monirul Hasan, Atul Shukla, Viqar Ahmad, Jan Sobus, Fatima Bencheikh, Sarah M. K. McGregor, Masashi Mamada, Chihaya Adachi\u200a, Shih-Chun Lo, Ebinazar B. Namdas<br \/>\n<i>Advanced Functional Materials <\/i>, <strong>30<\/strong>, 30, 2000580, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.202000580' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.202000580<\/a><br \/>[34]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#excitedstatedynamicsofthermallyactivateddelayedfluorescencefromanexcitedstateintramolecularprotontransfersystem' class='gray_back'><strong>[558] Excited State Dynamics of Thermally Activated Delayed Fluorescence from an Excited State Intramolecular Proton Transfer System<\/strong><br \/>Yun Long, Masashi Mamada, Chunyong Li, Paloma Lays dos Santos, Marco Colella, Andrew Danos, Chihaya Adachi, Andrew Monkman<br \/>\n<i>The Journal of Physical Chemistry Letters<\/i>, <strong>11<\/strong>, 3305 - 3312, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpclett.0c00498' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpclett.0c00498<\/a><br \/>[26]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#stoichiometrycontrolforthetuningofgrainpassivationanddomaindistributioningreenquasi2dmetalhalideperovskitefilmsandlightemittingdiodes' class='gray_back'><strong>[557] Stoichiometry control for the tuning of grain passivation and domain distribution in green quasi-2D metal halide perovskite films and light-emitting diodes<\/strong><br \/>Tai Cheng, Chuanjiang Qin, Satoru Watanabe, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Advanced Functional Materials<\/i>, <strong>30<\/strong>, 24, 2001816, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.202001816' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.202001816<\/a><br \/>[36]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#nanosecondtimescaledelayedfluorescencemoleculefordeepblueoledswithsmallefficiencyrolloff' class='gray_back'><strong>[556] Nanosecond-Time-Scale Delayed Fluorescence Molecule for Deep-Blue OLEDs with Small Efficiency Rolloff<\/strong><br \/>Jong Uk Kim, In Seob Park, Chin-Yiu Chan, Masaki Tanaka, Youichi Tsuchiya, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Nature Communications<\/i>, <strong>11<\/strong>, 1765, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-020-15558-5' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-020-15558-5<\/a><br \/>[233]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#manyexciplexsystemsexhibitorganiclongpersistentluminescence' class='gray_back'><strong>[555] Many exciplex systems exhibit organic long-persistent luminescence<\/strong><br \/>Naohiro Nishimura, Zesen Lin, Kazuya Jinnai, Ryota Kabe, Chihaya Adachi\u200a<br \/>\n<i>Advanced Functional Materials\u00a0<\/i>, 2000795, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.202000795' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.202000795<\/a><br \/>[52]:Number of citation <br \/>inside front cover \u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#killerimpuritiesinvacuumchamberthataffectthelifetimeoforganiclightemittingdiodes2' class='gray_back'><strong>[554] Killer Impurities in Vacuum Chamber that Affect the Lifetime of Organic Light-Emitting Diodes<\/strong><br \/>Hiroshi Fujimoto, Toshimitsu Nakamura, Kaori Nagayoshi, Kentaro Harada, Hiroshi Miyazaki, Takaomi Kurata, Junya Kiyota, Chihaya Adachi<br \/>\n<i>Applied Physics Letters<\/i>, <strong>116<\/strong>, 14, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.5141101' target='_blank'>https:\/\/doi.org\/10.1063\/1.5141101<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#provingtheoriginofdegradationinanorganiclightemittingdiodederivedfromtripletexcitoninteractionsbyamagneticfield' class='gray_back'><strong>[553] Understanding degradation of organic light-emitting diodes from magnetic field effects<\/strong><br \/>Masaki Tanaka, Ryo Nagata, Hajime Nakanotani, Chihaya Adachi\u200a<br \/>\n<i>Communication Materials<\/i>, <strong>1<\/strong>, 18, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s43246-020-0019-0' target='_blank'>https:\/\/doi.org\/10.1038\/s43246-020-0019-0<\/a><br \/>[18]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#detrimentaleffectofunreactedpbi2onthelongtermstabilityofperovskitesolarcells' class='gray_back'><strong>[552] Detrimental Effect of Unreacted PbI2 on the Long-Term Stability of Perovskite Solar Cells<\/strong><br \/>Ganbaatar Tumen-Ulzii, Chuanjiang Qin, Dino Klotz, Matthew R. Leyden , Pangpang Wang, Morgan Auffray, Takashi Fujihara, Toshinori Matsushima, Jin-Wook Lee,  Sung-Joon Lee, Yang Yang, Chihaya Adachi<br \/>\n<i>Advanced Materials<\/i>, <strong>32<\/strong>, 16, 1905035, 2020<br \/>DOI: <a href=' https:\/\/doi.org\/10.1002\/adma.201905035' target='_blank'> https:\/\/doi.org\/10.1002\/adma.201905035<\/a><br \/>[213]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#f8btoligomersfororganicsolidstatelasers' class='gray_back'><strong>[551] F8BT Oligomers for Organic Solid-State Lasers<\/strong><br \/>Masashi Mamada,  Ryutaro Komatsu, Chihaya Adachi\u200a<br \/>\n<i>ACS Appl. Mater. Interfaces<\/i>, <strong>12<\/strong>, 25, 28383 - 28391, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsami.0c05449' target='_blank'>https:\/\/doi.org\/10.1021\/acsami.0c05449<\/a><br \/>[17]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#utilizationofmultiheterodonorsinthermallyactivateddelayedfluorescencemoleculesandtheirhighperformancebluishgreenoleds' class='gray_back'><strong>[550] Utilization of Multi-Heterodonors in Thermally Activated Delayed Fluorescence Molecules and Their High Performance Bluish-Green Organic Light-Emitting Diodes<\/strong><br \/>Umamahesh Balijapalli, Masaki Tanaka, Morgan Auffray, Chin-Yiu Chan, Yi-Ting Lee, Youichi Tsuchiya, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>ACS Appl. Mater. Interfaces<\/i>, <strong>12<\/strong>, 8, 9498 - 9506, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsami.9b20020' target='_blank'>https:\/\/doi.org\/10.1021\/acsami.9b20020<\/a><br \/>[17]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancingspinorbitalcouplingindeepbluebluetadfemittersbyminimizingthedistancefromtheheteroatomsindonorstoacceptors' class='gray_back'><strong>[549] Enhancing Spin-orbital Coupling in Deep-blue\/blue TADF Emitters by Minimizing the Distance from the Heteroatoms in Donors to Acceptors<\/strong><br \/>Minghan Cai, Morgan Auffray, Dongdong Zhang, Yuewei Zhang, Ryo Nagata, Zesen Lin, Xun Tang, Chin-Yiu Chan, Yi-Ting Lee, Tianyu Huang, Xiaozeng Song, Youichi Tsuchiya, Chihaya Adachi, Lian Duan<br \/>\n<i>Chemical Engineering Journal<\/i>, <strong>420<\/strong>, 2, 127591, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.cej.2020.127591' target='_blank'>https:\/\/doi.org\/10.1016\/j.cej.2020.127591<\/a><br \/>[36]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#theroleofreverseintersystemcrossingusingatadftypeacceptormoleculeonthedevicestabilityofexciplexbasedorganiclightemittingdiodes' class='gray_back'><strong>[548] The Role of reverse intersystem crossing using a TADF-type acceptor molecule on the device stability of exciplex based organic-light emitting diodes<\/strong><br \/>Thanh Ba Nguyen, Hajime Nakanotani, Takuji Hatakeyama, Chihaya Adachi<br \/>\n<i>Advanced Materials<\/i>, <strong>32<\/strong>, 9, 1906614, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.201906614' target='_blank'>https:\/\/doi.org\/10.1002\/adma.201906614<\/a><br \/>[98]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#orangeorganiclongpersistentluminescencefromanelectrondonoracceptorbinarysystem' class='gray_back'><strong>[547] Orange Organic Long-persistent Luminescence from an Electron Donor\/Acceptor Binary System<\/strong><br \/>Zesen Lin, Ryota Kabe,  Chihaya Adachi<br \/>\n<i>Chemistry Letters<\/i>, <strong>49<\/strong>, 2, 203 - 206, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.190823' target='_blank'>https:\/\/doi.org\/10.1246\/cl.190823<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancedoperationaldurabilityofthermallyactivateddelayedfluorescencebasedorganiclightemittingdiodeswithatriazineelectrontransporter' class='gray_back'><strong>[546] Enhanced operational durability of thermally activated delayed fluorescence-based organic light-emitting diodes with a triazine electron transporter<\/strong><br \/>Kenta Yamaguchi,  Toshinori Matsushima, Atula S. D. Sandanayaka, Yoko Homma, Naoki Uchida, Chihaya Adachi<br \/>\n<i>Chemistry A European Journal<\/i>, <strong>26<\/strong>, 25, 5598 - 5602, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/chem.201905345' target='_blank'>https:\/\/doi.org\/10.1002\/chem.201905345<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#aspirofluoreneendcappedbisstilbenederivativewithalowamplifiedspontaneousemissionthresholdandbalancedholeandelectronmobilities' class='gray_back'><strong>[545] A spirofluorene-end-capped bis-stilbene derivative with a low amplified spontaneous emission threshold and balanced hole and electron mobilities<\/strong><br \/>Shi-Bin Ruan, Chin-Yiu Chan, Hao Ye, Ko Inada, Fatima Bencheikh, Atula  S. D. Sandanayaka,  Toshinori Matsushima, Chihaya Adachi\u200a<br \/>\n<i>Optical Materials<\/i>, <strong>100<\/strong>, 109636, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.optmat.2019.109636' target='_blank'>https:\/\/doi.org\/10.1016\/j.optmat.2019.109636<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#observationofnonradiativedeactivationbehaviorfromsingletandtripletstatesofthermallyactivateddelayedfluorescenceemittersinsolution' class='gray_back'><strong>[544] Observation of Nonradiative Deactivation Behavior from Singlet and Triplet States of Thermally Activated Delayed Fluorescence Emitters in Solution<\/strong><br \/>Naoto Notsuka, Hajime Nakanotani, Hiroki Noda, Kenichi Goushi, Chihaya Adachi\u200a<br \/>\n<i>J. Phys. Chem. Lett. <\/i>, <strong>11<\/strong>, 2, 562 - 566, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpclett.9b03302' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpclett.9b03302<\/a><br \/>[33]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#tripletmanagementforefficientperovskitelightemittingdiodes' class='gray_back'><strong>[543] Triplet management for efficient perovskite light-emitting diodes<\/strong><br \/>Chuanjiang Qin\u200a, Toshinori Matsushima, William J. Potscavage Jr, Atula S. D. Sandanayaka, , Matthew R. Leyden, Fatima Bencheikh, Kenichi Goushi, Fabrice Mathevet, Beno\u00eet Heinrich, Go Yumoto, Yoshihiko Kanemitsu, Chihaya Adachi\u200a<br \/>\n<i>Nature Photonics <\/i>, <strong>14<\/strong>, 70 - 75, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41566-019-0545-9' target='_blank'>https:\/\/doi.org\/10.1038\/s41566-019-0545-9<\/a><br \/>[174]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#intersystemcrossingrateinthermallyactivateddelayedfluorescenceemitters' class='gray_back'><strong>[542] Intersystem Crossing Rate in Thermally Activated Delayed Fluorescence Emitters<\/strong><br \/>Takashi Kobayashi, Daisuke Kawate, Akitsugu Niwa, Takashi Nagase, Kenichi Goushi, Chihaya Adachi, Hiroyoshi Naito<br \/>\n<i>Physica Status Solidi A<\/i>, <strong>217<\/strong>, 3, 1900616, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/pssa.201900616' target='_blank'>https:\/\/doi.org\/10.1002\/pssa.201900616<\/a><br \/>[8]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#interplayamongthermoelectricpropertiesatmosphericstabilityandelectronicstructuresinsolutiondepositedthinfilmsofpnaxniett' class='gray_back'><strong>[541] Interplay among thermoelectric properties, atmospheric stability, and electronic structures in solution-deposited thin films of P(NaX[Niett])<\/strong><br \/>Sunbin Hwang, William J. Potscavage, Jr., Tae-Wook Kim, Chihaya Adachi\u200a<br \/>\n<i>Advanced Electronic Materials<\/i>, <strong>6<\/strong>, 3, 1901172, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/aelm.201901172' target='_blank'>https:\/\/doi.org\/10.1002\/aelm.201901172<\/a><br \/>[4]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#molecularorientationofdiskshapedsmallmoleculeexhibitingthermallyactivateddelayedfluorescenceinhostguestfilms' class='gray_back'><strong>[540] Molecular orientation of disk-shaped small molecules exhibiting thermally activated delayed fluorescence in host\u2013guest films<\/strong><br \/>Masaki Tanaka, Hiroki Noda, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i> Applied Physics Letters <\/i>, <strong>116<\/strong>, 2, 23302, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.5140210' target='_blank'>https:\/\/doi.org\/10.1063\/1.5140210<\/a><br \/>[28]:Number of citation <br \/>Editor's Pick \u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#throughspacechargetransferforefficientskybluethermallyactivateddelayedfluorescencetadfemitterwithunconjugatedconnection' class='gray_back'><strong>[539] Through Space Charge Transfer for Efficient Sky-Blue Thermally Activated Delayed Fluorescence (TADF) Emitter with Unconjugated Connection<\/strong><br \/>Ya-Kun Wang, Chen-Chao Huang, Hao Ye, Cheng Zhong, Aziz Khan, Sheng-Yi Yang, Man-Keung Fung, Zuo-Quan Jiang, Chihaya Adachi, Liang-Sheng Liao<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>8<\/strong>, 2, 1901150, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.201901150' target='_blank'>https:\/\/doi.org\/10.1002\/adom.201901150<\/a><br \/>[63]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#influenceofenergygapbetweenchargetransferandlocallyexcitedstatesonorganiclongpersistenceluminescence' class='gray_back'><strong>[538] Influence of energy gap between charge-transfer and locally excited states on organic long persistence luminescence<\/strong><br \/>Zesen Lin, Ryota Kabe, Kai Wang, Chihaya Adachi\u200a<br \/>\n<i>Nature Communications<\/i>, <strong>11<\/strong>, 191, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-019-14035-y' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-019-14035-y<\/a><br \/>[97]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#designstrategyforrobustorganicsemiconductorlaserdyes' class='gray_back'><strong>[537] Design strategy for robust organic semiconductor laser dyes<\/strong><br \/>Yuya Oyama, Masashi Mamada, Atul Shukla, Evan G. Moore, Shih-Chun Lo, Ebinazar B. Namdas, Chihaya Adachi<br \/>\n<i>ACS Materials Letters<\/i>, <strong>2<\/strong>, 2, 161 - 167, 2020<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsmaterialslett.9b00536' target='_blank'>https:\/\/doi.org\/10.1021\/acsmaterialslett.9b00536<\/a><br \/>[40]:Number of citation <br \/>ACS Materials Letters\u306etop 20 downloaded \u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01\r\n<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2019'>2019<\/h4><div rel='#electrogeneratedchemiluminescenceandelectronicstatesofseveralorganometalliceuiiiandtbiiicomplexeseffectsoftheligands' class='gray_back'><strong>[536] Electrogenerated Chemiluminescence and Electronic States of Several Organometallic Eu(III) and Tb(III) Complexes: Effects of the Ligands<\/strong><br \/>Ryoichi Ishimatsu, Eri Kunisawa, Koji Nakano, Chihaya Adachi, Toshihiko Imato<br \/>\n<i>ChemistrySelect<\/i>, <strong>4<\/strong>, 9, 2815 - 2831, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/slct.201900595' target='_blank'>https:\/\/doi.org\/10.1002\/slct.201900595<\/a><br \/>[9]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#moleculardesignofhighlyeffectivethermallyactivateddelayedfluorescenceemittersbasedonorthosubstituteddonoracceptordonorpyridinecarbonitrilederivativesandtheirapplicationforhighp' class='gray_back'><strong>[535] Molecular design of highly effective thermally activated delayed fluorescence emitters based on ortho-substituted donor-acceptor-donor pyridinecarbonitrile derivatives and their application for high-performance OLEDs<\/strong><br \/>Shin Hyung Choi, Chan Hee Lee, Chihaya Adachi, Sae Youn Lee<br \/>\n<i>Dyes and Pigments<\/i>, <strong>171<\/strong>, 107775, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.dyepig.2019.107775' target='_blank'>https:\/\/doi.org\/10.1016\/j.dyepig.2019.107775<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#fluorescencelifetimeelongationofthermallyactivateddelayedfluorescence4czipnmoleculeswithencapsulationintozeoliticimidazoleframeworkszif11' class='gray_back'><strong>[534] Fluorescence lifetime elongation of thermally activated delayed fluorescence 4CzIPN molecules with encapsulation into zeolitic imidazole frameworks ZIF-11<\/strong><br \/>Harunobu Takeda, Michika Takeda, Hiroaki Yoshioka, Hiroaki Minamide, Yuji Oki, Chihaya Adachi<br \/>\n<i>Optical Materials Express<\/i>, <strong>9<\/strong>, 3, 1150 - 1160, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1364\/OME.9.001150' target='_blank'>https:\/\/doi.org\/10.1364\/OME.9.001150<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#controlofthedualemissionfromathermallyactivateddelayedfluorescenceemittercontainingphenothiazineunitsinorganiclightemittingdiodes' class='gray_back'><strong>[533] Control of the dual emission from a thermally activated delayed fluorescence emitter containing phenothiazine units in organic light-emitting diodes<\/strong><br \/>Ikbal Marghad, Fatima Bencheikh, Chao Wang, Sophia Manolikakes, Alice R\u00e9rat, Corinne Gosmini, Dae hyeon Kim, Jean-Charles Ribierre, Chihaya Adachi<br \/>\n<i>RSC Advances<\/i>, <strong>9<\/strong>, 4336 - 4343, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C8RA10393C' target='_blank'>https:\/\/doi.org\/10.1039\/C8RA10393C<\/a><br \/>[24]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancednearinfraredelectroluminescencefromaneodymiumcomplexinorganiclightemittingdiodeswithasolutionprocessedexciplexhost' class='gray_back'><strong>[532] Enhanced near-infrared electroluminescence from a neodymium complex in organic light-emitting diodes with a solution-processed exciplex host<\/strong><br \/>Afshin Shahalizad, Dae-Hyeon Kim, Sanyasi Rao Bobbara, Youichi Tsuchiya, Anthony D'Al\u00e9o, Chantal Andraud, Jean-Charles Ribierre, Jean-Michel Nunzi, Chihaya Adachi<br \/>\n<i>Applied Physics Letters<\/i>, <strong>114<\/strong>, 33301, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.5054721' target='_blank'>https:\/\/doi.org\/10.1063\/1.5054721<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#fabricationmethodindependenceoforganiclongpersistentluminescenceperformance' class='gray_back'><strong>[531] Fabrication-method Independence of Organic Long-persistent Luminescence Performance<\/strong><br \/>Kazuya Jinnai, Naohiro Nishimura, Ryota Kabe, Chihaya Adachi<br \/>\n<i>Chemistry Letters<\/i>, <strong>48<\/strong>, 3, 270 - 273, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.180949' target='_blank'>https:\/\/doi.org\/10.1246\/cl.180949<\/a><br \/>[17]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#seriesofpolaralcoholadditivesassistedimprovementinthepedotpssfilmpropertyandbulkheterojunctionorganicsolarcellperformance' class='gray_back'><strong>[530] Series of polar alcohol-additives assisted improvement in the PEDOT:PSS film property and bulk-heterojunction organic solar cell performance<\/strong><br \/>Yanqiong Zheng, Junle Yu, Jie Tang, Fang Yang, Chao Wang, Bin Wei, Xifeng Li, Chihaya Adachi<br \/>\n<i>Journal of Physics D: Applied Physics<\/i>, <strong>52<\/strong>, 255104, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1088\/1361-6463\/ab04dc' target='_blank'>https:\/\/doi.org\/10.1088\/1361-6463\/ab04dc<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancedenergytransferindopedbifluorenesinglecrystalsprospectsfororganiclasers' class='gray_back'><strong>[529] Enhanced Energy Transfer in Doped Bifluorene Single Crystals: Prospects for Organic Lasers<\/strong><br \/>Paulius Baronas, Gediminas Kreiza, Masashi Mamada, Satoshi Maedera, Povilas Adom\u0117nas, Ona Adom\u0117nien\u0117, Karolis Kazlauskas, Chihaya Adachi, Saulius Jur\u0161\u0117nas<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>8<\/strong>, 1901670, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.201901670' target='_blank'>https:\/\/doi.org\/10.1002\/adom.201901670<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#slowrecombinationofspontaneouslydissociatedorganicfluorophoreexcitons' class='gray_back'><strong>[528] Slow recombination of spontaneously dissociated organic fluorophore excitons<\/strong><br \/>Takahiko Yamanaka, Hajime Nakanotani, Chihaya Adachi\u200a<br \/>\n<i>Nature Communications<\/i>, <strong>10<\/strong>, 5748, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-019-13736-8' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-019-13736-8<\/a><br \/>[34]:Number of citation <br \/>Top 50 Nature Communications physics articles published in 2019\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01\r\n<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#kineticsofexcimerelectrogeneratedchemiluminescenceofpyreneand1pyrenebutyricacid2ethylhexylesterinacetonitrileandanionicliquidtriethylpentylphosphoniumbistrifluoromethanesulfonyli' class='gray_back'><strong>[527] Kinetics of Excimer Electrogenerated Chemiluminescence of Pyrene and 1-Pyrenebutyricacid 2-Ethylhexylester in Acetonitrile and an Ionic Liquid, Triethylpentylphosphonium Bis(Trifluoromethanesulfonyl)Imide<\/strong><br \/>Ryoichi Ishimatsu, Shuya Tashiro , Takashi Kasahara, Juro Oshima, Jun Mizuno, Koji Nakano, Chihaya Adachi, Toshihiko Imato<br \/>\n<i>The Journal of Physical Chemistry B<\/i>, <strong>123<\/strong>, 50, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpcb.9b08813' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpcb.9b08813<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#excitedstatestabilityofquasitwodimensionalmetalhalideperovskitefilmsunderopticalandelectricalexcitations' class='gray_back'><strong>[526] Excited-state stability of quasi-two-dimensional metal halide perovskite films under optical and electrical excitations<\/strong><br \/>Satoru Watanabe, Tai Cheng, Ganbaatar Tumen-Ulzii, Chuanjiang Qin, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Applied Physics Letters<\/i>, <strong>115<\/strong>, 23, 233502, 2019<br \/>DOI: <a href='https:\/\/aip.scitation.org\/doi\/10.1063\/1.5127308' target='_blank'>https:\/\/aip.scitation.org\/doi\/10.1063\/1.5127308<\/a><br \/>[8]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#originofexternalquantumefficiencyrolloffin44%e2%80%b2bisncarbazolestyrylbiphenylbsbczbasedinvertedorganiclightemittingdiodeunderhighpulsedelectricalexcitation' class='gray_back'><strong>[525] Origin of external quantum efficiency roll-off in 4,4\u2032-bis[(N-carbazole)styryl]biphenyl (BSBCz)-based inverted organic light emitting diode under high pulsed electrical excitation<\/strong><br \/>Fatima Bencheikh, Atula S. D. Sandanayaka, Toshiya Fukunaga, Toshinori Matsushima, Chinaya Adachi<br \/>\n<i>Journal of Applied Physics <\/i>, <strong>126<\/strong>, 18, 185501, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.5121485' target='_blank'>https:\/\/doi.org\/10.1063\/1.5121485<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivateddelayedfluorescencecarbonylderivativesfororganiclightemittingdiodeswithextremelynarrowfullwidthathalfmaximum' class='gray_back'><strong>[524] Thermally Activated Delayed Fluorescence Carbonyl Derivatives for Organic Light-Emitting Diodes with Extremely Narrow Full Width at Half-Maximum<\/strong><br \/>Xing Li, Yi-Zhong Shi, Kai Wang, Ming Zhang, Cai-Jun Zheng, Dian-Ming Sun, Gao-Le Dai, Xiao-Chun Fan, De-Qi Wang, Wei Liu, Yan-Qing Li, Jia Yu, Xue-Mei Ou, Chihaya Adachi, Xiao-Hong Zhang<br \/>\n<i>ACS Applied Materials & Interfaces<\/i>, <strong>11<\/strong>, 14, 13472 - 13480, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsami.8b19635' target='_blank'>https:\/\/doi.org\/10.1021\/acsami.8b19635<\/a><br \/>[130]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#detectingandidentifyingreversiblechangesinperovskitesolarcellsbyelectrochemicalimpedancespectroscopy' class='gray_back'><strong>[523] Detecting and identifying reversible changes in perovskite solar cells by electrochemical impedance spectroscopy<\/strong><br \/>Dino Klotz, Ganbaatar Tumen-Ulzii, Chuanjiang Qin,  Toshinori Matsushima,  Chihaya Adachi<br \/>\n<i>RSC Advances<\/i>, 9, 33436 - 33445, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C9RA07048F ' target='_blank'>https:\/\/doi.org\/10.1039\/C9RA07048F <\/a><br \/>[28]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#rednearinfraredthermallyactivateddelayedfluorescenceoledswithnear100internalquantumefficiency' class='gray_back'><strong>[522] Red\/Near-Infrared Thermally Activated Delayed Fluorescence OLEDs with Near 100% Internal Quantum Efficiency<\/strong><br \/>Jia-Xiong Chen, Wen-Wen Tao, Wen-Cheng Chen, Ya-Fang Xiao, Kai Wang, Chen Cao , Jia Yu, Shengliang Li, Feng-Xia Geng, Chihaya Adachi, Chun-Sing Lee, Xiao-Hong Zhang<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>58<\/strong>, 14660 - 14665, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.201906575' target='_blank'>https:\/\/doi.org\/10.1002\/anie.201906575<\/a><br \/>[237]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#triplettripletupconversionenhancedbyspinorbitcouplinginorganiclightemittingdiodes' class='gray_back'><strong>[521] Triplet\u2013triplet upconversion enhanced by spin\u2013orbit coupling in organic light-emitting diodes<\/strong><br \/>Ryota Ieuji, Kenichi Goushi, Chihaya Adachi\u200a<br \/>\n<i>Nature Communications<\/i>, <strong>10<\/strong>, 5283, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-019-13044-1' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-019-13044-1<\/a><br \/>[101]:Number of citation <br \/>Top 50 Nature Communications physics articles published in 2019\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#intramolecularnoncovalentinteractionsfacilitatethermallyactivateddelayedfluorescencetadf' class='gray_back'><strong>[520] Intramolecular Noncovalent Interactions Facilitate Thermally Activated Delayed Fluorescence (TADF)<\/strong><br \/>Xian-Kai Chen, Brandon W. Bakr, Morgan Auffray, Youichi Tsuchiya, C. David Sherrill, Chihaya Adachi, Jean-Luc Bredas<br \/>\n<i>The Journal of Physical Chemistry Letters<\/i>, <strong>10<\/strong>, 12, 3260 - 3268, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpclett.9b01220' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpclett.9b01220<\/a><br \/>[61]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivateddelayedfluorescencewith7externalquantumefficiencyfromalightemittingelectrochemicalcell' class='gray_back'><strong>[519] Thermally activated delayed fluorescence with 7% external quantum efficiency from a light-emitting electrochemical cell<\/strong><br \/>Petter Lundberg, Youichi Tsuchiya, E. Mattias Lindh, Shi Tang, Chihaya Adachi, Ludvig Edman<br \/>\n<i>Nature Communications<\/i>, <strong>10<\/strong>, 5307, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41467-019-13289-w' target='_blank'>https:\/\/doi.org\/10.1038\/s41467-019-13289-w<\/a><br \/>[46]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#filmtransferofstructuredorganoleadhalideperovskiteforlowcostlasingapplications' class='gray_back'><strong>[518] Film Transfer of Structured Organo-Lead-Halide Perovskite for Low-Cost Lasing Applications<\/strong><br \/>Matthew R. Leyden, Toshinori Matsushima, Fatima Bencheikh,  Chihaya Adachi<br \/>\n<i>Applied Physics Letters<\/i>, <strong>115<\/strong>, 14, 141106, 2019<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.5113647' target='_blank'>http:\/\/doi.org\/10.1063\/1.5113647<\/a><br \/>[3]:Number of citation <br \/>Editor's Pick\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#criticalroleofintermediateelectronicstatesforspinflipprocessesinchargetransfertypeorganicmoleculeswithmultipledonorsandacceptors' class='gray_back'><strong>[517] Critical role of intermediate electronic states for spin-flip processes in charge-transfer-type organic molecules with multiple donors and acceptors<\/strong><br \/>Hiroki Noda, Xian-Kai Chen, Hajime Nakanotani, Takuya Hosokai, Momoka Miyajima, Naoto Noutsuka, Yuuki Kashima, Jean-Luc Bredas, Chihaya Adachi<br \/>\n<i>Nature Materials<\/i>, <strong>18<\/strong>, 1084 - 1090, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41563-019-0465-6' target='_blank'>https:\/\/doi.org\/10.1038\/s41563-019-0465-6<\/a><br \/>[200]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#luminescentcuiandagicoordinationpolymersfastphosphorescenceorthermallyactivateddelayedfluorescence' class='gray_back'><strong>[516] Luminescent Cu(I) and Ag(I) Coordination Polymers: Fast Phosphorescence or Thermally Activated Delayed Fluorescence<\/strong><br \/>Gang-Yuan Li, Hao Ye, Fu-Cheng Zhu, Yan Geng, Jian-Zhong Fan, Jian-Ping Ma,  Chihaya Adachi, Yu-Bin Dong<br \/>\n<i> Chinese Chemical Letters<\/i>, <strong>30<\/strong>, 11, 1931 - 1934, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.cclet.2019.08.006' target='_blank'>https:\/\/doi.org\/10.1016\/j.cclet.2019.08.006<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#carrierrecombinationanddiffusioninwetcasttiniodideperovskitelayersunderhighintensityphotoexcitation' class='gray_back'><strong>[515] Carrier Recombination and Diffusion in Wet-Cast Tin Iodide Perovskite Layers Under High Intensity Photoexcitation<\/strong><br \/>Patrik \u0160\u010dajev, Ramunas Aleksiejunas, Paulius Baronas, D\u017eiugas Litvinas, Marek Kolenda, Chuanjiang Qin, Takashi Fujihara, Toshinori Matsushima, Chihaya Adachi, Saulius Jur\u0161\u0117nas<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>123<\/strong>, 32, 19275 - 19281, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpcc.9b03226' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpcc.9b03226<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#largemetalhalideperovskitecrystalsforfieldeffecttransistorapplications' class='gray_back'><strong>[514] Large metal halide perovskite crystals for field-effect transistor applications<\/strong><br \/>Toshinori Matsushima, Matthew R. Leyden, Takashi Fujihara, Chuanjiang Qin, Atula S. D. Sandanayaka,  Chihaya Adachi<br \/>\n<i>Applied Physics Letters<\/i>, <strong>115<\/strong>, 12060, 2019<br \/>DOI: <a href=' https:\/\/doi.org\/10.1063\/1.5116411' target='_blank'> https:\/\/doi.org\/10.1063\/1.5116411<\/a><br \/>[26]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#tadfactivationbysolventfreezingtheroleofnonradiativetripletdecayandspinorbitcouplingincarbazolebenzonitrilederivatives' class='gray_back'><strong>[513] TADF activation by solvent freezing: The role of nonradiative triplet decay and spin-orbit coupling in carbazole benzonitrile derivatives<\/strong><br \/>Hosokai Takuya, Nakanotani Hajime, Santou S., Noda Hiroki , Nakayama Yasuo, Adachi Chihaya<br \/>\n<i>Synthetic Metals<\/i>, <strong>252<\/strong>, 62 - 68, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.synthmet.2019.04.005' target='_blank'>https:\/\/doi.org\/10.1016\/j.synthmet.2019.04.005<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#hightripletenergybipolarhostmaterialsbasedonphosphineoxidederivativesforefficientskybluethermallyactivateddelayedfluorescenceorganiclightemittingdiodeswithreducedrolloff' class='gray_back'><strong>[512] High-Triplet-Energy Bipolar Host Materials Based on Phosphine Oxide Derivatives for Efficient Sky-Blue Thermally Activated Delayed Fluorescence Organic Light-Emitting Diodes with Reduced Roll-off<\/strong><br \/>Jong Uk Kim, Michael Y. Wong, Shiv Kumar, Oliver G. Hayes, Finlay Duncan, Chin-Yiu Chan, Ben Yiu-Wing Wong, Hao Ye, Lin-Song Cui, Hajime Nakanotani, Eli Zysman-Colman, Chihaya Adachi<br \/>\n<i>Chemistry Letters<\/i>, <strong>48<\/strong>, 10, 1225 - 1228, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.190412' target='_blank'>https:\/\/doi.org\/10.1246\/cl.190412<\/a><br \/>[4]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#anisotropyofthermaldiffusivityinleadhalideperovskitelayersrevealedbythermalgratingtechnique' class='gray_back'><strong>[511] Anisotropy of Thermal Diffusivity in Lead Halide Perovskite Layers Revealed by Thermal Grating Technique<\/strong><br \/>Patrik Scajev, Ramunas Aleksiejunas, Shinobu Terakawa, Chuanjiang Qin, Takashi Fujihara, Toshinori Matsushima,  Chihaya Adachi, Saulius Jursenas<br \/>\n<i>The Journal of Physical Chemistry C<\/i>, <strong>123<\/strong>, 24, 14914 - 14920, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acs.jpcc.9b02288' target='_blank'>https:\/\/doi.org\/10.1021\/acs.jpcc.9b02288<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#originofdualemissionin%cf%83bridgeddonoracceptortadfcompounds' class='gray_back'><strong>[510] Origin of dual emission in \u03c3-bridged donor\u2013acceptor TADF compounds<\/strong><br \/>Rokas Skiasgiris, Tomas Serevisius, Karolis Kazlauskas, Yan Geng, Chihaya Adachi, Saulius Jursenas<br \/>\n<i>Journal of Materials Chemistry C<\/i>, <strong>7<\/strong>, 12601 - 12609, 2019<br \/>DOI: <a href='http:\/\/doi.org\/10.1039\/c9tc03548f' target='_blank'>http:\/\/doi.org\/10.1039\/c9tc03548f<\/a><br \/>[27]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#indicationofcurrentinjectionlasingfromanorganicsemiconductor' class='gray_back'><strong>[509] Indication of current-injection lasing from an organic semiconductor<\/strong><br \/>Atula S. D. Sandanayaka, Toshinori Matsushima , Fatima Bencheikh, Shinobu Terakawa, William J. Potscavage Jr., Chuanjiang Qin, Takashi Fujihara, Kenichi Goushi, Jean-Charles Ribierre,  Chihaya Adachi<br \/>\n<i>Applied Physics Express<\/i>, <strong>12<\/strong>, 6, 61010, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.7567\/1882-0786\/ab1b90' target='_blank'>https:\/\/doi.org\/10.7567\/1882-0786\/ab1b90<\/a><br \/>[184]:Number of citation <br \/>\"Spotlights\"\u8ad6\u6587\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#turnonofskybluethermallyactivateddelayedfluorescenceandcircularlypolarizedluminescencecplviaincreasedtorsionbyabulkycarbazolophanedonor' class='gray_back'><strong>[508] Turn on of Sky-Blue Thermally Activated Delayed Fluorescence and Circularly Polarized Luminescence (CPL) via Increased Torsion by a Bulky Carbazolophane Donor<\/strong><br \/>Nidhi Sharma, Eduard Spuling, Cornelia M. Mattern, Wenbo Li, Olaf Fuhr, Youichi Tsuchiya, Chihaya Adachi, tefan Br\u00e4se, Ifor D. W. Samuel, Eli Zysman-Colman<br \/>\n<i>Chemical Science<\/i>, <strong>10<\/strong>, 6689 - 6696, 2019<br \/>DOI: <a href=' https:\/\/doi.org\/10.1039\/c9sc01821b' target='_blank'> https:\/\/doi.org\/10.1039\/c9sc01821b<\/a><br \/>[108]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#excellentsemiconductorsbasedontetracenotetraceneandpentacenopentacenefromstableclosedshelltosingletopenshell' class='gray_back'><strong>[507] Excellent Semiconductors Based on Tetracenotetracene and Pentacenopentacene: From Stable Closed-Shell to Singlet Open-Shell<\/strong><br \/>Tanguy Jousselin-Oba, Masashi Mamada, J\u00e9r\u00f4me Marrot,  Antoine Maignan,  Chihaya Adachi, Abderrahim Yassar, Michel Frigoli<br \/>\n<i>Journal of the American Chemical Society <\/i>, <strong>141<\/strong>, 23, 9373 - 9381, 2019<br \/>DOI: <a href='https:\/\/pubs.acs.org\/doi\/10.1021\/jacs.9b03488' target='_blank'>https:\/\/pubs.acs.org\/doi\/10.1021\/jacs.9b03488<\/a><br \/>[35]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highperformancefromextraordinarilythickorganiclightemittingdiodes' class='gray_back'><strong>[506] High performance from extraordinarily thick organic light-emitting diodes<\/strong><br \/>Toshinori Matsushima, Fatima Bencheikh, Takeshi Komino, Matthew R. Leyden, Atula S. D. Sandanayaka, Chuanjiang Qin, Chihaya Adachi<br \/>\n<i>Nature<\/i>, <strong>572<\/strong>, 502 - 506, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/s41586-019-1435-5' target='_blank'>https:\/\/doi.org\/10.1038\/s41586-019-1435-5<\/a><br \/>[128]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#dithia33paracyclophanecoreaversatileplatformforfinetripletstatetuningandthroughspacetadfemission' class='gray_back'><strong>[505] Dithia[3.3]paracyclophane Core: a Versatile Platform for Fine Triplet State Tuning and Through Space TADF Emission<\/strong><br \/>Morgan Auffray, Dae Hyeon Kim, Jong Uk Kim, Fatima Bencheikh, David Kreher, Qisheng Zhang , Anthony D\u2019Al\u00e9o, Jean-Charles Ribierre, Fabrice Mathevet, Chihaya Adachi<br \/>\n<i>Chemistry - An Asian Journal<\/i>, <strong>14<\/strong>, 1921 - 1925, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/asia.201900401' target='_blank'>https:\/\/doi.org\/10.1002\/asia.201900401<\/a><br \/>[28]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#suppressionofstructuralchangeupons1t1conversionassiststhermallyactivateddelayedfluorescenceprocessincarbazolebenzonitrilederivatives' class='gray_back'><strong>[504] Suppression of Structural Change upon S<sub>1<\/sub>-T<sub>1<\/sub> Conversion Assists Thermally Activated Delayed Fluorescence Process in Carbazole-Benzonitrile Derivatives<\/strong><br \/>Masaki Saigo, Kiyoshi Miyata, Sei\u2019ichi Tanaka, Hajime Nakanotani, Chihaya Adachi, Ken Onda<br \/>\n<i>J. Phys. Chem. Lett.<\/i>, <strong>10<\/strong>, 2475 - 2480, 2019<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/acs.jpclett.9b00810' target='_blank'>http:\/\/doi.org\/10.1021\/acs.jpclett.9b00810<\/a><br \/>[38]:Number of citation <br \/>Supplementary Cover\u306b\u63a1\u629e\u3055\u308c\u307e\u3057\u305f\uff01<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#towardairstablefieldeffecttransistorswithatiniodidebasedhybridperovskitesemiconductor' class='gray_back'><strong>[503] Toward air-stable field-effect transistors with a tin iodide-based hybrid perovskite semiconductor<\/strong><br \/>Toshinori Matsushima, Shinobu Terakawa, Matthew R. Leyden, Takashi Fujihara, Chuanjiang Qin,  Chihaya Adachi<br \/>\n<i>Journal of Applied Physics <\/i>, <strong>125<\/strong>, 23, 235501, 2019<br \/>DOI: <a href=' https:\/\/doi.org\/10.1063\/1.5097433' target='_blank'> https:\/\/doi.org\/10.1063\/1.5097433<\/a><br \/>[16]:Number of citation <br \/>Editor's pick up\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01\r\n<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#theoriginofchangesinelectricalpropertiesoforganicfilmsfabricatedatvariousvacuumdepositionrates' class='gray_back'><strong>[502] The origin of changes in electrical properties of organic films fabricated at various vacuum-deposition rates<\/strong><br \/>Amir Mikaeili, Toshinori Matsushima, Yu Esaki, Sahar Alasvand Yazdani, Chihaya Adachi, Ezeddin Mohajerani<br \/>\n<i>Optical Materials<\/i>, <strong>91<\/strong>, 93 - 100, 2019<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.optmat.2019.03.012' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.optmat.2019.03.012<\/a><br \/>[9]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photostableandhighlyemissiveglassyorganicdotsexhibitingthermallyactivateddelayedfluorescence' class='gray_back'><strong>[501] Photostable and highly emissive glassy organic dots exhibiting thermally activated delayed fluorescence<\/strong><br \/>Youichi Tsuchiya, Koudai Ikesue, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Chemical Communications<\/i>, <strong>55<\/strong>, 5215 - 5218, 2019<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/C9CC01420A' target='_blank'>http:\/\/dx.doi.org\/10.1039\/C9CC01420A<\/a><br \/>[16]:Number of citation <\/div><div class='white_back'><p>inside back cover\u306b\u9078\u5b9a\u3055\u308c\u307e\u3057\u305f\uff01<\/p><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#effectofcarrierbalanceondevicedegradationoforganiclightemittingdiodesbasedonthermallyactivateddelayedfluorescenceemitters' class='gray_back'><strong>[500] Effect of Carrier Balance on Device Degradation of Organic Light-Emitting Diodes based on Thermally Activated Delayed Fluorescence Emitters<\/strong><br \/>Masaki Tanaka, Hiroki Noda, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Advanced Electronic Materials<\/i>, <strong>5<\/strong>, 5, 1800708, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/aelm.201800708' target='_blank'>https:\/\/doi.org\/10.1002\/aelm.201800708<\/a><br \/>[40]:Number of citation <br \/>\u30d0\u30c3\u30af\u30ab\u30d0\u30fc\u306b\u9078\u5b9a\u3055\u308c\u307e\u3057\u305f\uff01<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#dependenceoftheamorphousstructuresandphotoluminescencepropertiesoftris8hydroxyquinolinatoaluminumfilmsonvacuumdepositionconditions' class='gray_back'><strong>[499] Dependence of the amorphous structures and photoluminescence properties of tris(8-hydroxyquinolinato)aluminum films on vacuum deposition conditions<\/strong><br \/>Yu Esaki , Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Organic Electronics<\/i>, <strong>67<\/strong>, 237 - 241, 2019<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.orgel.2019.01.032' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.orgel.2019.01.032<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#degradationmechanismandstabilityimprovementstrategyforanorganiclasergainmaterial44%e2%80%b2bisncarbazolestyrylbiphenylbsbcz' class='gray_back'><strong>[498] Degradation Mechanism and Stability Improvement Strategy for an Organic Laser Gain Material 4,4\u2032-Bis[(N-carbazole)styryl]biphenyl (BSBCz)<\/strong><br \/>Toshinori Matsushima, Seiya Yoshida, Ko Inada, Yu Esaki, Toshiya Fukunaga, Hiroyuki Mieno, Nozomi Nakamura, Fatima Bencheikh, Matthew R. Leyden, Ryutaro Komatsu, Chuanjiang Qin, Atula S. D. Sandanayaka, Chihaya Adachi<br \/>\n<i>Adv. Funct. Mater.<\/i>, <strong>29<\/strong>, 10, 1807148, 2019<br \/>DOI: <a href='http:\/\/dx.doi.org\/\/10.1002\/adfm.201807148' target='_blank'>http:\/\/dx.doi.org\/\/10.1002\/adfm.201807148<\/a><br \/>[21]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#discussiononholetrapsofamorphousfilmsofnndi1naphthylnndiphenyl11biphenyl44diamine%ce%b1npddepositedatdifferentsubstratetemperatures' class='gray_back'><strong>[497] Discussion on hole traps of amorphous films of N,N'-di(1-naphthyl)-N,N'-diphenyl-(1,1'-biphenyl)-4,4'-diamine (\u03b1-NPD) deposited at different substrate temperatures<\/strong><br \/>Yu Esaki, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Applied Physics Letters<\/i>, <strong>114<\/strong>, 173301, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.5089269' target='_blank'>https:\/\/doi.org\/10.1063\/1.5089269<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photoluminescencequenchingprobesspinconversionandexcitondynamicsinthermallyactivateddelayedfluorescencematerials' class='gray_back'><strong>[496] Photoluminescence Quenching Probes Spin Conversion and Exciton Dynamics in Thermally Activated Delayed Fluorescence Materials<\/strong><br \/>Brett Yurash, Hajime Nakanotani, Yoann Olivier, David Beljonne, Chihaya Adachi , Thuc\u2010Quyen Nguyen<br \/>\n<i>Advanced Materials<\/i>, <strong>31<\/strong>, 21, 1804490, 2019<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.201804490' target='_blank'>https:\/\/doi.org\/10.1002\/adma.201804490<\/a><br \/>[27]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#asolventfreeandvacuumfreemeltprocessingmethodtofabricatehighlycrystallineorganicsemiconductinglayersfororganicelectronicapplications' class='gray_back'><strong>[495] A solvent-free and vacuum-free melt-processing method to fabricate organic semiconducting layers with large crystal size for organic electronic applications<\/strong><br \/>Jean-Charles Ribierre, Li Zhao, Xiao Liu, Emmanuelle Lacaze, Stephane M\u00e9ry, Piotr Sleczkowski, Yiming Xiao, Fr\u00e9d\u00e9ric Lafolet, Daisuke Hashizume, Tetsuya Aoyama, Masanobu Uchiyama, Jeong Weon Wu, Elena Zaborova, Frederic Fages, Anthony D\u2019Al\u00e9o; Fabrice Mathevet; Chihaya Adachi<br \/>\n<i>Journal of Materials Chemistry C<\/i>, <strong>7<\/strong>, 3190 - 3198, 2019<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/C8TC04834G' target='_blank'>http:\/\/dx.doi.org\/10.1039\/C8TC04834G<\/a><br \/>[13]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#distributedfeedbacklasersandlightemittingdiodesusing1naphthylmethylamnoniumlowdimensionalperovskite' class='gray_back'><strong>[494] Distributed Feedback Lasers and Light-Emitting Diodes Using 1-Naphthylmethylamnonium Low-Dimensional Perovskite<\/strong><br \/>Matthew R. Leyden, Shinobu Terakawa, Toshinori Matsushima, Shibin Ruan, Kenichi Goushi, Morgan Auffray, Atula S. D. Sandanayaka, Chuanjiang Qin, Fatima Bencheikh, Chihaya Adachi<br \/>\n<i>ACS Photonics<\/i>, <strong>6<\/strong>, 2, 460 - 466, 2019<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/acsphotonics.8b01413' target='_blank'>http:\/\/dx.doi.org\/10.1021\/acsphotonics.8b01413<\/a><br \/>[48]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientthermallyactivateddelayedfluorescencewithslowreverseintersystemcrossing' class='gray_back'><strong>[493] Highly Efficient Thermally Activated Delayed Fluorescence with Slow Reverse Intersystem Crossing<\/strong><br \/>Hiroki Noda , Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>48<\/strong>, 2, 126 - 129, 2019<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1246\/cl.180813' target='_blank'>http:\/\/dx.doi.org\/10.1246\/cl.180813<\/a><br \/>[22]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2018'>2018<\/h4><div rel='#theroleoffluorinesubstitutiononthe%cf%80bridgeinconstructingeffectivethermallyactivateddelayedfluorescencemolecules' class='gray_back'><strong>[492] The role of fluorine-substitution on the \u03c0-bridge in constructing effective thermally activated delayed fluorescence molecules<\/strong><br \/>Yun Li, Jiao-Jiao Liang, Hong-Cheng Li, Lin-Song Cui, Man-Keung Fung, Stephen Barlow, Seth R. Marder, Chihaya Adachi, Zuo-Quan Jiang, Liang-Sheng Liao<br \/>\n<i>J. Mater. Chem. C<\/i>, <strong>6<\/strong>, 5536 - 5541, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C8TC01158C' target='_blank'>https:\/\/doi.org\/10.1039\/C8TC01158C<\/a><br \/>[28]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientandstableskybluedelayedfluorescenceorganiclightemittingdiodeswithcieybelow04' class='gray_back'><strong>[491] Efficient and stable sky-blue delayed fluorescence organic light-emitting diodes with CIEy below 0.4<\/strong><br \/>Chin-Yiu Chan, Masaki Tanaka, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Nature Communications<\/i>, <strong>9<\/strong>, 5036, 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1038\/s41467-018-07482-6' target='_blank'>http:\/\/dx.doi.org\/10.1038\/s41467-018-07482-6<\/a><br \/>[103]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#wellorderedfilmsofdiskshapedthermallyactivateddelayedfluorescencemolecules' class='gray_back'><strong>[490] Well-ordered films of disk-shaped thermally activated delayed fluorescence molecules<\/strong><br \/>Yuri Hasegawa, Hayato Minami, Satoru Kanada, Yoichi Yamada, Masahiro Sasaki, Takuya Hosokai, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Journal of Photonics for Energy<\/i>, <strong>8<\/strong>, 3, 32110, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1117\/1.JPE.8.032110' target='_blank'>https:\/\/doi.org\/10.1117\/1.JPE.8.032110<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#computationalanalysisoftheinterplaybetweendeepleveltrapsandperovskitesolarcellefficiency' class='gray_back'><strong>[489] Computational Analysis of the Interplay between Deep Level Traps and Perovskite Solar Cell Efficiency<\/strong><br \/>Kara Kearney, Gabseok Seo, Toshinori Matsushima, Chihaya Adachi, Elif Ert, Angus Rockett<br \/>\n<i>Journal of the American Chemical Society<\/i>, <strong>140<\/strong>, 46, 15655 - 15660, 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/jacs.8b06002' target='_blank'>http:\/\/dx.doi.org\/10.1021\/jacs.8b06002<\/a><br \/>[17]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowasethresholdandefficientelectroluminescencefromacarbazolederivatizedexcitedstateintramolecularprotontransferesiptdye' class='gray_back'><strong>[488] Low Amplified Spontaneous Emission Threshold and Efficient Electroluminescence from a Carbazole Derivatized Excited-State Intramolecular Proton Transfer Dye<\/strong><br \/>Van T. N. Mai, Atul Shukla, Masashi Mamada, Satoshi Maedera, Paul E. Shaw, Jan Sobus, Ilene Allison, Chihaya Adachi, Ebinazar B. Namdas, Shih-Chun Lo<br \/>\n<i>ACS Photonics<\/i>, <strong>5<\/strong>, 11, 4447 - 4455, 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/acsphotonics.8b00907' target='_blank'>http:\/\/dx.doi.org\/10.1021\/acsphotonics.8b00907<\/a><br \/>[42]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#nearinfraredelectroluminescenceandlowthresholdamplifiedspontaneousemissionabove800nmfromathermallyactivateddelayedfluorescentemitter' class='gray_back'><strong>[487] Near-Infrared Electroluminescence and Low Threshold Amplified Spontaneous Emission above 800 nm from a Thermally Activated Delayed Fluorescent Emitter<\/strong><br \/>Hao Ye, Dae Hyeon Kim, Xiankai Chen, Atula S. D. Sandanayaka, Jong Uk Kim, Elena Zaborova, Gabriel Canard, Youichi Tsuchiya, Eun Young Choi, Jeong Weon Wu, Fr\u00e9d\u00e9ric Fages, Jean-Luc Bredas, Anthony D\u2019Al\u00e9o, Jean-Charles Ribierre, Chihaya Adachi<br \/>\n<i>Chemistry of Materials<\/i>, <strong>30<\/strong>, 19, 6702 - 6710, 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/acs.chemmater.8b02247' target='_blank'>http:\/\/dx.doi.org\/10.1021\/acs.chemmater.8b02247<\/a><br \/>[99]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organiclongpersistentluminescencefromaflexibleand' class='gray_back'><strong>[486] Organic Long-Persistent Luminescence from a Flexible and Transparent Doped Polymer<\/strong><br \/>Zesen Lin, Ryota Kabe, Naohiro Nishimura, Kazuya Jinnai, Chihaya Adachi<br \/>\n<i>Advanced Materials<\/i>, <strong>30<\/strong>, 45, 1803713, 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adma.201803713' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adma.201803713<\/a><br \/>[107]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#therelationofphasetransitioneffectsandthermalstabilityofplanarperovskitesolarcells' class='gray_back'><strong>[485] The relation of phase transition effects and thermal stability of planar perovskite solar cells<\/strong><br \/>Chuanjiang Qin, Toshinori Matsushima, Dino Klotz, Takashi Fujihara, Chihaya Adachi<br \/>\n<i>Advanced Science<\/i>, <strong>6<\/strong>, 1, 1801079, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/advs.201801079' target='_blank'>https:\/\/doi.org\/10.1002\/advs.201801079<\/a><br \/>[30]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#solventdependentinvestigationofcarbazolebenzonitrilederivativesdoesthe3le%e2%88%921ctenergygapfacilitatethermallyactivateddelayedfluorescence' class='gray_back'><strong>[484] Solvent-dependent investigation of carbazole benzonitrile derivatives: does the 3LE\u22121CT energy gap facilitate thermally activated delayed fluorescence?<\/strong><br \/>Takuya Hosokai, Hiroki Noda, Hajime Nakanotani, Takanori Nawata, Yasuo Nakayama, Hiroyuki Matsuzaki, Chihaya Adachi<br \/>\n<i>Journal of Photonics for Energy<\/i>, <strong>8<\/strong>, 3, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1117\/1.JPE.8.032102' target='_blank'>https:\/\/doi.org\/10.1117\/1.JPE.8.032102<\/a><br \/>[20]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#triplettripletannihilationinathermallyactivateddelayedfluorescenceemitterlightlydopedinahost' class='gray_back'><strong>[483] Triplet-triplet annihilation in a thermally activated delayed fluorescence emitter lightly doped in a host<\/strong><br \/>Akitsugu Niwa, Shota Haseyama, Takashi Kobayashi, Takashi Nagase, Kenichi Goushi, Chihaya Adachi, Hiroyoshi Naito<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>113<\/strong>, 83301, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.5025870' target='_blank'>https:\/\/doi.org\/10.1063\/1.5025870<\/a><br \/>[14]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#theimportanceofexcited%e2%80%90stateenergyalignmentforefficientexciplexsystemsbasedonastudyofphenylpyridinatoboronderivatives' class='gray_back'><strong>[482] The Importance of Excited\u2010State Energy Alignment for Efficient Exciplex Systems Based on a Study of Phenylpyridinato Boron Derivatives<\/strong><br \/>Masashi Mamada, Guojian Tian, Hajime Nakanotani, Jianhua Su, Chihaya Adachi<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>57<\/strong>, 38, 12380 - 12384, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.201804218' target='_blank'>https:\/\/doi.org\/10.1002\/anie.201804218<\/a><br \/>[67]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#simplemolecularengineeringapproachforenhancingorientationandoutcouplingefficiencyofthermallyactivateddelayedfluorescentemitterswithoutredshiftingemission' class='gray_back'><strong>[481] Simple Molecular-Engineering Approach for Enhancing Orientation and Outcoupling Efficiency of Thermally Activated Delayed Fluorescent Emitters without Red-Shifting Emission<\/strong><br \/>Yi-Ting Lee, Po-Chen Tseng, Takeshi Komino, Masashi Mamada, Ruby Janet Ortiz, Man-Kit Leung, Tien-Lung Chiu, Chi-Feng Lin, Jiun-Haw Lee, Chihaya Adachi, Chao-Tsen Chen, Chin-Ti Chen<br \/>\n<i>ACS Applied Materials & Interfaces<\/i>, <strong>10<\/strong>, 50, 43842 - 43849, 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/acsami.8b16199' target='_blank'>http:\/\/dx.doi.org\/10.1021\/acsami.8b16199<\/a><br \/>[28]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancedelectroluminescencefromorganiclightemittingdiodeswithanorganicinorganicperovskitehostlayer' class='gray_back'><strong>[480] Enhanced Electroluminescence from Organic Light-Emitting Diodes with an Organic-Inorganic Perovskite Host Layer<\/strong><br \/>Toshinori Matsushima, Chuanjiang Qin, Kenichi Goushi, Fatima Bencheikh, Takeshi Komino, Matthew Leyden, Atula S. D. Sandanayaka, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>30<\/strong>, 38, 1802662, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.201802662' target='_blank'>https:\/\/doi.org\/10.1002\/adma.201802662<\/a><br \/>[21]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#excitedstateengineeringforefficientreverseintersystemcrossing' class='gray_back'><strong>[479] Excited state engineering for efficient reverse intersystem crossing<\/strong><br \/>Hiroki Noda, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Science Advances<\/i>, <strong>4<\/strong>, 6, eaao6910, 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1126\/sciadv.aao6910 ' target='_blank'>http:\/\/dx.doi.org\/10.1126\/sciadv.aao6910 <\/a><br \/>[245]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#vacuumchamberconsiderationsforimprovedorganiclightemittingdiodelifetime' class='gray_back'><strong>[478] Vacuum chamber considerations for improved organic light-emitting diode lifetime<\/strong><br \/>Hiroshi Fujimoto, Shin-ichiro Kobayashi, Hin Wai Mo, Satoshi Yukiwaki, Kaori Nagayoshi, Mao Yasumatsu, Kentaro Harada, Chihaya Adachi<br \/>\n<i>AIP Advances<\/i>, <strong>8<\/strong>, 85025, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.5047542' target='_blank'>https:\/\/doi.org\/10.1063\/1.5047542<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#exploitingsingletfissioninorganiclight%e2%80%90emittingdiodes' class='gray_back'><strong>[477] Exploiting Singlet Fission in Organic Light\u2010Emitting Diodes<\/strong><br \/>Ryo Nagata, Hajime Nakanotani, William J. Potscavage Jr., Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>30<\/strong>, 33, 1801484, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.201801484' target='_blank'>https:\/\/doi.org\/10.1002\/adma.201801484<\/a><br \/>[88]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowamplifiedspontaneousemissionthresholdfromorganicdyesbasedonbis%e2%80%90stilbene' class='gray_back'><strong>[476] Low Amplified Spontaneous Emission Threshold from Organic Dyes Based on Bis\u2010stilbene<\/strong><br \/>Masashi Mamada, Toshiya Fukunaga, Fatima Bencheikh, Atula S. D. Sandanayaka, Chihaya Adachi<br \/>\n<i>Advanced Functional Materials<\/i>, <strong>28<\/strong>, 32, 1802130, 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adfm.201802130' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adfm.201802130<\/a><br \/>[40]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#wide%e2%80%90rangetuningandenhancementoforganiclong%e2%80%90persistentluminescenceusingemitterdopants' class='gray_back'><strong>[475] Wide\u2010Range Tuning and Enhancement of Organic Long\u2010Persistent Luminescence Using Emitter Dopants<\/strong><br \/>Kazuya Jinnai, Ryota Kabe, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>30<\/strong>, 38, 1800365, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.201800365' target='_blank'>https:\/\/doi.org\/10.1002\/adma.201800365<\/a><br \/>[92]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#amplifiedspontaneousemissioninphenylethylammoniummethylammoniumleadiodidequasi2dperovskites' class='gray_back'><strong>[474] Amplified spontaneous emission in phenylethylammonium methylammonium lead iodide quasi-2D perovskites<\/strong><br \/>Matthew R. Leyden, Toshinori Matsushima, Chuanjiang Qin, Shibin Ruan, Hao Ye, Chihaya Adachi<br \/>\n<i>Phys.Chem.Chem.Phys.<\/i>, <strong>20<\/strong>, 15030, 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/c8cp02133c' target='_blank'>http:\/\/dx.doi.org\/10.1039\/c8cp02133c<\/a><br \/>[39]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#observationofspontaneousorientationpolarizationinevaporatedfilmsoforganiclightemittingdiodematerials' class='gray_back'><strong>[473] Observation of spontaneous orientation polarization in evaporated films of organic light-emitting diode materials<\/strong><br \/>Kohei Osada, Kenichi Goushi, Hironori Kaji, Chihaya Adachi, Hisao Ishii, Yutaka Noguchi<br \/>\n<i>Org. Electron.<\/i>, <strong>58<\/strong>, 313 - 317, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.orgel.2018.04.026' target='_blank'>https:\/\/doi.org\/10.1016\/j.orgel.2018.04.026<\/a><br \/>[44]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#trifluoromethanemodificationofthermallyactivateddelayedfluorescencemoleculesforhighefficiencyblueorganiclightemittingdiodes' class='gray_back'><strong>[472] Trifluoromethane Modification of Thermally Activated Delayed Fluorescence Molecules for High-efficiency Blue Organic Light-emitting Diodes<\/strong><br \/>Masayuki Yokoyama, Ko Inada, Youichi Tsuchiya, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Chem. Comm.<\/i>, <strong>54<\/strong>, 8261 - 8264 , 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/C8CC03425G' target='_blank'>http:\/\/dx.doi.org\/10.1039\/C8CC03425G<\/a><br \/>[40]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#reversiblecontroloftripletdynamicsinmetalorganicframeworkentrappedorganicemittersviaexternalgases' class='gray_back'><strong>[471] Reversible control of triplet dynamics in metal-organic framework-entrapped organic emitters via external gases<\/strong><br \/>Hiroyuki Mieno, Ryota Kabe, Chihaya Adachi<br \/>\n<i>Communications Chemistry<\/i>, <strong>1<\/strong>, 27, 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1038\/s42004-018-0027-x' target='_blank'>http:\/\/dx.doi.org\/10.1038\/s42004-018-0027-x<\/a><br \/>[18]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#awideenergygapnaphthalenebasedliquidorganicsemiconductorhostforliquiddeepblueorganiclightemittingdiodes' class='gray_back'><strong>[470] A wide-energy-gap naphthalene-based liquid organic semiconductor host for liquid deep-blue organic light-emitting diodes<\/strong><br \/>Naofumi Kobayashi, Hiroyuki Kuwae, Juro Oshima, Ryoichi Ishimatsu, Shuya Tashiro, Toshihiko Imato, Chihaya Adachi, Shuichi Shoji, Jun Mizuno<br \/>\n<i>Journal of Luminescence<\/i>, <strong>200<\/strong>, 19 - 23, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.jlumin.2018.03.072' target='_blank'>https:\/\/doi.org\/10.1016\/j.jlumin.2018.03.072<\/a><br \/>[21]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#synthesisandphysicalpropertiesofbrominatedhexaceneandholetransferpropertiesofthinfilmtransistors' class='gray_back'><strong>[469] Synthesis and Physical Properties of Brominated Hexacene and Hole-Transfer Properties of Thin-film Transistors<\/strong><br \/>Motonori Watanabe, Takaaki Miyazaki, Toshinori Matsushima, Junko Matsuda, Ching-Ting Chein, Masahiko Shibahara, Chihaya Adachi, Shih-Sheng Sun, Tahsin J. Chow, Tatsumi Ishihara<br \/>\n<i>RSC Advances<\/i>, <strong>8<\/strong>, 13259 - 13265, 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/C7RA13632C' target='_blank'>http:\/\/dx.doi.org\/10.1039\/C7RA13632C<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highperformancepandntypelightemittingfieldeffecttransistorsemployingthermallyactivateddelayedfluorescence' class='gray_back'><strong>[468] High performance p-and n-type light-emitting field-effect transistors employing thermally activated delayed fluorescence<\/strong><br \/>Jan Sobus, Fatima Bencheikh, Masashi Mamada, Robert Wawrzinek, Jean-Charles Ribierre, Chihaya Adachi, Shih-Chun Lo, Ebinazar Benjamin Namdas<br \/>\n<i>Advanced Functional Materials<\/i>, <strong>28<\/strong>, 28, 1800340, 2018<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.201800340' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.201800340<\/a><br \/>[29]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#diffusionenhancementinhighlyexcitedmapbi3perovskitelayerswithadditives' class='gray_back'><strong>[467] Diffusion Enhancement in Highly Excited MAPbI<sub>3<\/sub> Perovskite Layers with Additives<\/strong><br \/>Patrik \u0160\u010dajev, Chuanjiang Qin, Ramunas Aleksiejunas, Paulius Baronas, Saulius Miasojedovas, Takashi Fujihara, Toshinori Matsushima, Chihaya Adachi, Saulius Jur\u0161\u0117nas<br \/>\n<i>J. 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Sandanayaka, Dandan Yao, Li Zhao, Takeshi Komino, Elena Zaborova, Gabriel Canard, Youichi Tsuchiya, Eunyoung Choi, Jeong Weon Wu, Fr\u00e9d\u00e9ric Fages, Jean-Luc Br\u00e9das, Jean-Charles Ribierre; Chihaya  Adachi<br \/>\n<i>Nature Photonics<\/i>, <strong>12<\/strong>, 98 - 104, 2018<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1038\/s41566-017-0087-y' target='_blank'>http:\/\/dx.doi.org\/10.1038\/s41566-017-0087-y<\/a><br \/>[362]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#ultrahighpowerefficiencythermallyactivateddelayedfluorescentoledsbythestrategicuseofelectrontransportmaterials' class='gray_back'><strong>[465] Ultrahigh Power Efficiency Thermally Activated Delayed Fluorescent OLEDs by the Strategic Use of Electron-Transport Materials<\/strong><br \/>H. Sasabe, R. Sato, K. Suzuki, Y. Watanabe, C. Adachi, H. Kaji, J. Kido<br \/>\n<i>Adv. Opt. 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Lett.<\/i>, <strong>110<\/strong>, 23303, 2017<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4974045' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4974045<\/a><br \/>[38]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organiclightemittingdiodeswithhorizontallyorientedthermallyactivateddelayedfluorescenceemitters' class='gray_back'><strong>[420] Organic light emitting diodes with horizontally oriented thermally activated delayed fluorescence emitters<\/strong><br \/>D. H. Kim, K. Inada, L. Zhao, T. Komino, N. Matsumoto,  J. C. Ribierre, C. Adachi<br \/>\n<i>J. Mater. Chem. C<\/i>, <strong>5<\/strong>, 1216 - 1223 , 2017<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/C6TC04786F' target='_blank'>http:\/\/dx.doi.org\/10.1039\/C6TC04786F<\/a><br \/>[51]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#bifluorenesinglecrystalswithextremelylowthresholdamplifiedspontaneousemission' class='gray_back'><strong>[419] Bifluorene Single Crystals with Extremely Low-Threshold Amplified Spontaneous Emission<\/strong><br \/>Gediminas Kreiza, Paulius Baronas, Edvinas Radiunas, Povilas Adome\u02d9nas, Ona Adomeniene, Karolis Kazlauskas, Jean-Charles Ribierre, Chihaya Adachi, Saulius Jur\u0161enas<br \/>\n<i>Adv. Opt. Mater.<\/i>, 1600823, 2017<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adom.201600823' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adom.201600823<\/a><br \/>[14]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#contributionsofahighertripletexcitedstatetotheemissionpropertiesofathermallyactivateddelayedfluorescenceemitter' class='gray_back'><strong>[418] Contributions of a Higher Triplet Excited State to the Emission Properties of a Thermally Activated Delayed-Fluorescence Emitter<\/strong><br \/>Takashi Kobayashi, Akitsugu Niwa, Kensho Takaki, Shota Haseyama, Takashi Nagase, Kenichi Goushi, Chihaya Adachi, Hiroyoshi Naito<br \/>\n<i>Phys. Rev. Applied<\/i>, <strong>7<\/strong>, 34002, 2017<br \/>DOI: <a href='https:\/\/doi.org\/10.1103\/PhysRevApplied.7.034002' target='_blank'>https:\/\/doi.org\/10.1103\/PhysRevApplied.7.034002<\/a><br \/>[40]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#controllingsinglettripletenergysplittingfordeepbluethermallyactivateddelayedfluorescenceemitters' class='gray_back'><strong>[417] Controlling Singlet-Triplet Energy Splitting for Deep-Blue Thermally Activated Delayed Fluorescence Emitters<\/strong><br \/>Lin-Song Cui, Hiroko Nomura, Yan Geng, Jong Uk Kim, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>56<\/strong>, 1571 - 1575, 2017<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/anie.201609459' target='_blank'>http:\/\/dx.doi.org\/10.1002\/anie.201609459<\/a><br \/>[347]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#versatilemolecularfunctionalizationforinhibitingconcentrationquenchingofthermallyactivateddelayedfluorescence' class='gray_back'><strong>[416] Versatile Molecular Functionalization for Inhibiting Concentration Quenching of Thermally Activated Delayed Fluorescence<\/strong><br \/>Jiyoung Lee, Naoya Aizawa, Masaki Numata, Chihaya Adachi, Takuma Yasuda<br \/>\n<i>Adv. Mater.<\/i>, <strong>29<\/strong>, 1604856, 2017<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adma.201604856' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adma.201604856<\/a><br \/>[205]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#nearinfraredelectrophosphorescenceupto11%ce%bcmusingathermallyactivateddelayedfluorescencemoleculeastripletsensitizer' class='gray_back'><strong>[415] Near-infrared electrophosphorescence up to 1.1 \u03bcm using a thermally activated delayed fluorescence molecule as triplet sensitizer<\/strong><br \/>Ryo Nagata, Hajime  Nakanotani, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>29<\/strong>, 1604265, 2017<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adma.201604265' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adma.201604265<\/a><br \/>[44]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#multifunctionalbenzoquinoneadditiveforefficientandstableplanarperovskitesolarcells' class='gray_back'><strong>[414] Multifunctional benzoquinone additive for efficient and stable planar perovskite solar cells<\/strong><br \/>Chuanjiang Qin, Toshinori Matsushima, Takashi Fujihara, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>29<\/strong>, 1603808, 2017<br \/>DOI: <a href=' http:\/\/dx.doi.org\/10.1002\/adma.201603808' target='_blank'> http:\/\/dx.doi.org\/10.1002\/adma.201603808<\/a><br \/>[134]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#tetrathienoanthracenebased%cf%80extendednarrowbandgapmoleculessynthesisphysicochemicalandphotovoltaicproperties' class='gray_back'><strong>[413] Tetrathienoanthracene-Based \u03c0-Extended Narrow-Bandgap Molecules: Synthesis, Physicochemical, and Photovoltaic Properties<\/strong><br \/>Hideaki Komiyama, Chiahya Adachi, Takuma Yasuda<br \/>\n<i>Chem. Lett.<\/i>, <strong>46<\/strong>, 1, 29 - 31, 2017<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1246\/cl.160858' target='_blank'>http:\/\/dx.doi.org\/10.1246\/cl.160858<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2016'>2016<\/h4><div rel='#tunableoledscolortuningofavobenzoneborondifluorideasanemittertoachievefull%e2%80%90coloremission' class='gray_back'><strong>[412] Tunable OLEDs: Color Tuning of Avobenzone Boron Difluoride as an Emitter to Achieve Full\u2010Color Emission<\/strong><br \/>Hin\u2010Wai Mo, Youichi Tsuchiya, Yan Geng, Takehiro Sagawa, Chika Kikuchi, Hajime Nakanotani, Fuyuki Ito, Chihaya Adachi<br \/>\n<i>Adv. Funct. Mater.<\/i>, <strong>26<\/strong>, 37, 6847 - 6847, 2016<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.201670245' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.201670245<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#starshapedandlinear%cf%80conjugatedoligomersconsistingofatetrathienoanthracenecoreandmultiplediketopyrrolopyrrolearmsfororganicsolarcells' class='gray_back'><strong>[411] Star-shaped and linear \u03c0-conjugated oligomers consisting of a tetrathienoanthracene core and multiple diketopyrrolopyrrole arms for organic solar cells<\/strong><br \/>Hideaki Komiyama, Chihaya Adachi, Takuma Yasuda<br \/>\n<i>Beilstein J. Org. Chem.<\/i>, <strong>12<\/strong>, 1459 - 1466, 2016<br \/>DOI: <a href='https:\/\/doi.org\/10.3762\/bjoc.12.142' target='_blank'>https:\/\/doi.org\/10.3762\/bjoc.12.142<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#aphenazaborinbasedhighefficiencybluedelayedfluorescencematerial' class='gray_back'><strong>[410] A Phenazaborin-Based High-Efficiency Blue Delayed Fluorescence Material<\/strong><br \/>In Seob Park, Masaki Numata, Chihaya Adachi, Takuma Yasuda<br \/>\n<i>Bulletin of the Chemical Society of Japan<\/i>, <strong>89<\/strong>, 3, 2016<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/bcsj.20150399' target='_blank'>https:\/\/doi.org\/10.1246\/bcsj.20150399<\/a><br \/>[51]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#corrigendumbenzimidazobenzothiazole%e2%80%90basedbipolarhoststoharvestnearlyalloftheexcitonsfrombluedelayedfluorescenceandphosphorescentorganiclight%e2%80%90emittingdiodes' class='gray_back'><strong>[409] Corrigendum: Benzimidazobenzothiazole\u2010based Bipolar Hosts to Harvest Nearly All of the Excitons from Blue Delayed Fluorescence and Phosphorescent Organic Light\u2010Emitting Diodes<\/strong><br \/>Lin\u2010Song Cui, Jong Uk Kim, Hiroko Nomura, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Angew. 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Dahlem,  Masanobu Uchiyama,  Sang Youl Kim,  Jeong Weon Wu,  Jean-Charles Ribierre, Chihaya Adachi,  Dong-Wook Kim and  Pascal Andr\u00e9<br \/>\n<i>J. Mater. Chem. A<\/i>, <strong>4<\/strong>, 4252 - 4263, 2016<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C6TA00677A' target='_blank'>https:\/\/doi.org\/10.1039\/C6TA00677A<\/a><br \/>[24]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#horizontalmolecularorientationoflightemittingoligofluorenesinspincoatedglassyorganicthinfilms' class='gray_back'><strong>[407] Horizontal molecular orientation of light-emitting oligofluorenes in spin-coated glassy organic thin films<\/strong><br \/>Li Zhao, Takeshi Komino, Dae Hyeon Kim, Muhammad Hasnan Sazzad, Delphine Pitrat, Jean-Christophe Mulatier, Chantal Andraud, Jean-Charles Ribierre, Chihaya Adachi<br \/>\n<i>J. Mater. Chem. 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Commun.<\/i>, <strong>52<\/strong>, 11744 - 11747, 2016<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C6CC05130H' target='_blank'>https:\/\/doi.org\/10.1039\/C6CC05130H<\/a><br \/>[61]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#nchannelfieldeffecttransistorswithanorganicinorganiclayeredperovskitesemiconductor' class='gray_back'><strong>[405] N-channel field-effect transistors with an organic-inorganic layered perovskite semiconductor<\/strong><br \/>Toshinori Matsushima, Fabrice Mathevet, Beno\u00eet Heinrich, Shinobu Terakawa, Takashi Fujihara, Chuanjiang Qin, Atula S. D. Sandanayaka, Jean-Charles Ribierre, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>109<\/strong>, 253301, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4972404' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4972404<\/a><br \/>[64]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#fieldeffecttransistorswithvacuumdepositedorganicinorganicperovskitefilmsassemiconductorchannels' class='gray_back'><strong>[404] Field-effect transistors with vacuum-deposited organic-inorganic perovskite films as semiconductor channels<\/strong><br \/>Toshinori Matsushima, Takeshi Yasuda, Katsuhiko Fujita, Chihaya Adachi<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>120<\/strong>, 233301, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4972226' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4972226<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#horizontalmolecularorientationoflightemittingoligofluorenesinsolutionprocessedglassyorganicthinfilms' class='gray_back'><strong>[403] Horizontal molecular orientation of light-emitting oligofluorenes in solution-processed glassy organic thin films<\/strong><br \/>Li Zhao, Takeshi Komino, Dae Hyeon Kim, Muhammad Hasnan Sazzad, Delphine Pitrat, Jean-Christophe Mulatier, Chantal Andraud, Jean-Charles Ribierre, Chihaya Adachi<br \/>\n<i>Journal of Materials Chemistry C<\/i>, <strong>4<\/strong>, 11557 - 11565 , 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/C6TC02861F' target='_blank'>http:\/\/dx.doi.org\/10.1039\/C6TC02861F<\/a><br \/>[14]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#influenceofvacuumchamberimpuritiesonthelifetimeoforganiclightemittingdiodes' class='gray_back'><strong>[402] Influence of vacuum chamber impurities on the lifetime of organic light-emitting diodes<\/strong><br \/>Hiroshi Fujimoto, Takashi Suekane, Katsuya Imanishi, Satoshi Yukiwaki, Hong Wei, Kaori Nagayoshi, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Sci. 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Lett.<\/i>, <strong>45<\/strong>, 12, 1463 - 1466, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1246\/cl.160814' target='_blank'>http:\/\/dx.doi.org\/10.1246\/cl.160814<\/a><br \/>[13]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#solutionprocessedorganicthermoelectricmaterialexhibitingdopingconcentrationdependentpolarity' class='gray_back'><strong>[398] Solution-processed organic thermoelectric material exhibiting doping-concentration-dependent polarity<\/strong><br \/>Sunbin Hwang, William J. Potscavage, Jr., Yu Seok Yang, In Seob Park, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Phys. Chem. Chem. Phys. C<\/i>, <strong>18<\/strong>, 29199 - 29207, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/c6cp04572c' target='_blank'>http:\/\/dx.doi.org\/10.1039\/c6cp04572c<\/a><br \/>[46]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#effectof34910perylenetetracarboxylicbisbenzimidazoleptcbiaswellasbathocuproinebcpandaginterlayerthicknessontheperformanceoforganictandemsolarcells' class='gray_back'><strong>[397] Effect of 3,4,9,10-perylenetetracarboxylic bisbenzimidazole (PTCBI) as well as bathocuproine (BCP) and Ag interlayer thickness on the performance of organic tandem solar cells<\/strong><br \/>Yanqiong Zheng, Fang Yang, Chao Wang, Jing Zhang, William J. Potscavage, Jr., Bin Wei, Chihaya Adachi, Wenhong Pu, Changzhu Yang, Jianhua Zhang<br \/>\n<i>Synthetic Metals<\/i>, <strong>221<\/strong>, 179 - 185, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.synthmet.2016.09.001' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.synthmet.2016.09.001<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#influenceofmaterialimpuritiesintheholeblockinglayeronthelifetimeoforganiclightemittingdiodes' class='gray_back'><strong>[396] Influence of material impurities in the hole-blocking layer on the lifetime of organic light-emitting diodes<\/strong><br \/>Hiroshi Fujimoto, Masayuki Yahiro, Satoshi Yukiwaki, Keiko Kusuhara, Nozomi Nakamura, Takashi Suekane, Hong Wei, Katsuya Imanishi, Ko Inada, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>109<\/strong>, 243302, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4972055' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4972055<\/a><br \/>[16]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#solutionprocessedorganicinorganicperovskitefieldeffecttransistorswithhighholemobilities' class='gray_back'><strong>[395] Solution-processed Organic-inorganic Perovskite Field-effect Transistors with High Hole Mobilities<\/strong><br \/>Toshinori Matsushima, Sunbin Hwang, Atula S. D. Sandanayaka, Chuanjiang Qin, Shinobu Terakawa, Takashi Fujihara, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>28<\/strong>, 10275 - 10281, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adma.201603126' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adma.201603126<\/a><br \/>[220]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#0616thzbandspectroscopyoforganicthermallyactivateddelayedfluorescencematerials' class='gray_back'><strong>[394] 0.6 - 1.6 THz band spectroscopy of organic thermally activated delayed fluorescence materials<\/strong><br \/>Harunobu Takeda, Cong Chen, Takeshi Komino, Hiroaki Yoshioka, Yuji Oki, Chihaya Adachi<br \/>\n<i>Optical Materials Express<\/i>, <strong>6<\/strong>, 10, 3045 - 3052, 2016<br \/>DOI: <a href='https:\/\/doi.org\/10.1364\/OME.6.003045' target='_blank'>https:\/\/doi.org\/10.1364\/OME.6.003045<\/a><br \/>[8]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#theoreticalpredicationfortransitionenergiesofthermallyactivateddelayedfluorescencemolecules' class='gray_back'><strong>[393] Theoretical predication for transition energies of thermally activated delayed fluorescence molecules<\/strong><br \/>Xiao-Hui Tian, Hai-Tao Sun, Qi-Sheng Zhang, Chihaya Adachi <br \/>\n<i>Chinese Chemical Letters<\/i>, <strong>27<\/strong>, 8, 1445 - 1452, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.cclet.2016.07.017' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.cclet.2016.07.017<\/a><br \/>[35]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#quenchingbehaviorofthermallyactivateddelayedfluorescencefromadonoracceptormolecule1235tetrakiscarbazol9yl46dicyanobenzenebyo2' class='gray_back'><strong>[392] Quenching Behavior of Thermally Activated Delayed Fluorescence from a Donor-Acceptor Molecule, 1,2,3,5-tetrakis(carbazol-9-yl)-4,6-dicyanobenzene by O2<\/strong><br \/>Ryoichi Ishimatsu, Yuko Kirino, Chihaya Adachi, Koji Nakano, Toshihiko Imato<br \/>\n<i>Chem. Lett.<\/i>, <strong>45<\/strong>, 10, 1183 - 1185, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1246\/cl.160561' target='_blank'>http:\/\/dx.doi.org\/10.1246\/cl.160561<\/a><br \/>[16]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#colortuningofavobenzoneborondifluorideasanemittertoachievefullcoloremission' class='gray_back'><strong>[391] Color Tuning of Avobenzone Boron Difluoride as an Emitter to Achieve Full-Color Emission<\/strong><br \/>Hin-Wai Mo, Youichi Tsuchiya, Yan Geng, Takehiro Sagawa, Chika Kikuchi, Hajime Nakanotani, Fuyuki Ito, Chihaya Adachi<br \/>\n<i>Adv. Funct. Mater.<\/i>, <strong>26<\/strong>, 37, 6703 - 6710, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adfm.201601257' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adfm.201601257<\/a><br \/>[80]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#controllingsynergisticoxidationprocessesforefficientandstablebluethermallyactivateddelayedfluorescencedevices' class='gray_back'><strong>[390] Controlling Synergistic Oxidation Processes for Efficient and Stable Blue Thermally Activated Delayed Fluorescence Devices<\/strong><br \/>Lin-Song Cui, Ya-Li Deng, Daniel Ping-Kuen Tsang, Zuo-Quan Jiang, Qisheng Zhang, Liang-Sheng Liao, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>28<\/strong>, 35, 7620 - 7625, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adma.201602127' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adma.201602127<\/a><br \/>[143]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#increasedvistouvupconversionperformancebyenergylevelmatchingbetweenatadfdonorandhightripletenergyacceptors' class='gray_back'><strong>[389] Increased Vis-to-UV upconversion performance by energy level matching between a TADF donor and high triplet energy acceptors<\/strong><br \/>Nobuhiro Yanai, Mariko Kozue, Shogo Amemori, Ryota Kabe, Chihaya Adachi, Nobuo Kimizuka<br \/>\n<i>J. Mater. Chem. C<\/i>, <strong>4<\/strong>, 27, 6447 - 6451, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/C6TC01816E ' target='_blank'>http:\/\/dx.doi.org\/10.1039\/C6TC01816E <\/a><br \/>[93]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highcoverageorganicinorganicperovskitefilmfabricatedbydoublespincoatingforimprovedsolarpowerconversionandamplifiedspontaneousemission' class='gray_back'><strong>[388] High-coverage organic-inorganic perovskite film fabricated by double spin coating for improved solar power conversion and amplified spontaneous emission<\/strong><br \/>Toshinori Matsushima, Munetomo Inoue, Takashi Fujihara, Shinobu Terakawa, Chuanjiang Qin, Atula S. D. Sandanayaka, Chihaya Adachi<br \/>\n<i>Chemical Physics Letters<\/i>, <strong>661<\/strong>, 131 - 135, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.cplett.2016.08.067' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.cplett.2016.08.067<\/a><br \/>[11]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electroluminescencefromcompletelyhorizontallyorienteddyemolecules' class='gray_back'><strong>[387] Electroluminescence from completely horizontally oriented dye molecules<\/strong><br \/>Takeshi Komino, Yuta Sagara, Hiroyuki Tanaka, Yuji Oki, Nozomi Nakamura, Hiroshi Fujimoto, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>108<\/strong>, 241106, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4954163' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4954163<\/a><br \/>[65]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#improvementofthequasicontinuouswavelasingpropertiesinorganicsemiconductorlasersusingoxygenastripletquencher' class='gray_back'><strong>[386] Improvement of the quasi-continuous-wave lasing properties in organic semiconductor lasers using oxygen as triplet quencher<\/strong><br \/>Atula S.D. Sandanayaka, Li Zhao, Delphine Pitrat, Jean-Christophe Mulatier, Toshinori Matsushima, Chantal Andraud, Ju-Hyung Kim,  Jean-Charles Ribierre, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>108<\/strong>, 22, 223301, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4952970 ' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4952970 <\/a><br \/>[33]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#magnesiumgoldbinaryalloyfororganiclightemittingdiodeswithhighcorrosionresistance' class='gray_back'><strong>[385] Magnesium-gold binary alloy for organic light-emitting diodes with high corrosion resistance<\/strong><br \/>Hiroya Arai, Hajime Nakanotani, Kei Morimoto, Chihaya Adachi<br \/>\n<i>Journal of Vacuum Science and Technology B<\/i>, <strong>34<\/strong>,  040607 , 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1116\/1.4952408' target='_blank'>http:\/\/dx.doi.org\/10.1116\/1.4952408<\/a><br \/>[4]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photoluminescenceinathermallyactivateddelayedfluorescenceemitterfororganiclightemittingdiodes' class='gray_back'><strong>[384] Photoluminescence in a Thermally Activated Delayed Fluorescence Emitter for Organic Light-emitting Diodes<\/strong><br \/>Akitsugu Niwa, Kensho Takaki, Takashi Kobayashi, Takashi Nagase, Kenichi Goushi, Chihaya Adachi, Hiroyoshi Naito<br \/>\n<i>Journal of the Imaging Society of Japan<\/i>, <strong>55<\/strong>, 2, 143 - 148, 2016<br \/>DOI: <a href='http:\/\/doi.org\/10.11370\/isj.55.143' target='_blank'>http:\/\/doi.org\/10.11370\/isj.55.143<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#microcrystallizationofasolutionprocessableorganicsemiconductorincapillariesforhighperformanceambipolarfieldeffecttransistors' class='gray_back'><strong>[383] Microcrystallization of a Solution-Processable Organic Semiconductor in Capillaries for High-Performance Ambipolar Field-Effect Transistors<\/strong><br \/> Satoshi Watanabe, Takuma Fujita, Jean Charles Ribierre, Kazuto Takaishi, Masanobu Uchiyama, Chihaya Adachi, Tsuyoshi Muto,  Tetsuya Aoyama, Mutsuyoshi Matsumoto,<br \/>\n<i> ACS Applied Materials & Interfaces<\/i>, <strong>8<\/strong>, 27, 17574 - 17582, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/acsami.5b12713' target='_blank'>http:\/\/dx.doi.org\/10.1021\/acsami.5b12713<\/a><br \/>[19]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancedelectroluminescencefromathiophenebasedinsulatedmolecularwire' class='gray_back'><strong>[382] Enhanced Electroluminescence from a Thiophene-Based Insulated Molecular Wire<\/strong><br \/>Gabor Mehes, Chengjun Pan, Fatima Bencheikh, Zhao Li, Kazunori Sugiyasu, Masayuki Takeuchi,  Jean-Charles Ribierre, Chihaya Adachi<br \/>\n<i>ACS Macro Letters<\/i>, <strong>5<\/strong>, 781 - 785, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/acsmacrolett.6b00205' target='_blank'>http:\/\/dx.doi.org\/10.1021\/acsmacrolett.6b00205<\/a><br \/>[23]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivateddelayedfluorescencefrompentacarbazorylbenzonitrile' class='gray_back'><strong>[381] Thermally activated delayed fluorescence from pentacarbazorylbenzonitrile<\/strong><br \/>Shuho Tanimoto, Takatsugu Suzuki, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>45<\/strong>, 7, 770 - 772, 2016<br \/>DOI: <a href='http:\/\/doi.org\/10.1246\/cl.160290' target='_blank'>http:\/\/doi.org\/10.1246\/cl.160290<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#fabricationofbottomemittingorganiclightemittingdiodepanelsinterconnectedwithencapsulationsubstratebyausinglebondauflipchipbondingandcapillarydrivenfillingprocess' class='gray_back'><strong>[380] Fabrication of bottom-emitting organic light-emitting diode panels interconnected with encapsulation substrate by Ausingle bondAu flip-chip bonding and capillary-driven filling process<\/strong><br \/>S. Yamada, C.-H. Shim, T. Edura, A. Okada,  C. Adachi, S. Shoji, J. Mizuno<br \/>\n<i>Microelectronic Engineering<\/i>, <strong>161<\/strong>, 94 - 97, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.mee.2016.04.012' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.mee.2016.04.012<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#siliconbasednearinfraredphotodetectorusingselfassembledorganiccrystallinenanopillars' class='gray_back'><strong>[379] Silicon based near infrared photodetector using self-assembled organic crystalline nano-pillars<\/strong><br \/>Yoshiharu Ajiki, Tetsuo Kan, Masayuki Yahiro, Akiko Hamada, Junji Adachi, Chihaya Adachi, Kiyoshi Matsumoto, Isao Shimoyama<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>108<\/strong>, 151102, 2016<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4945690' target='_blank'>https:\/\/doi.org\/10.1063\/1.4945690<\/a><br \/>[38]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowamplifiedspontaneousemissionthresholdandsuppressionofelectroluminescenceefficiencyrolloffinlayersdopedwithter99spirobifluorene' class='gray_back'><strong>[378] Low amplified spontaneous emission threshold and suppression of electroluminescence efficiency roll-off in layers doped with ter(9,9'-spirobifluorene)<\/strong><br \/>Munetomo Inoue,  Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>108<\/strong>, 133302, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4945596' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4945596<\/a><br \/>[32]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#benzimidazobenzothiazolebasedbipolarhoststoharvestnearlyallexcitonsinbluedelayedfluorescenceandphosphorescentorganiclightemittingdiodes' class='gray_back'><strong>[377] Benzimidazobenzothiazole-based Bipolar Hosts to Harvest Nearly All Excitons in Blue Delayed Fluorescence and Phosphorescent Organic Light-Emitting Diodes<\/strong><br \/>Lin-Song Cui, Jong Uk Kim, Hiroko Nomura, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>55<\/strong>, 24, 6864 - 6868 , 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/anie.201601136' target='_blank'>http:\/\/dx.doi.org\/10.1002\/anie.201601136<\/a><br \/>[118]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#selfassemblyofelectrondonoracceptorbasedcarbazolederivativesnovelfluorescentorganicnanoprobesforbothonephotonandtwophotoncellularimaging' class='gray_back'><strong>[376] Self-Assembly of Electron Donor-Acceptor Based Carbazole Derivatives: Novel Fluorescent Organic Nanoprobes for Both One-Photon and Two-Photon Cellular Imaging<\/strong><br \/>Jinfeng Zhang, Wencheng Chen, Sergii Kalytchuk, King Fai Li, Rui Chen, Chihaya Adachi, Zhan Chen,  Andrey Rogach, Guangyu Zhu, Peter Yu, WenJun Zhang, Kok Wai Cheah, Xiao-Hong Zhang, Chun-Sing Lee<br \/>\n<i>ACS Applied Materials & Interfaces<\/i>, <strong>8<\/strong>, 18,  11355 - 11365, 2016<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/acsami.6b03259' target='_blank'>https:\/\/doi.org\/10.1021\/acsami.6b03259<\/a><br \/>[52]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#longlivedroomtemperaturephosphorescenceofcoroneneinzeoliticimidazolateframeworkzif8' class='gray_back'><strong>[375] Long-lived Room-Temperature Phosphorescence of Coronene in Zeolitic Imidazolate Framework ZIF-8<\/strong><br \/>Hiroyuki Mieno, Ryota Kabe, Naoto Notsuka, Mark D. Allendorf, Chihaya Adachi<br \/>\n<i>Adv. Opt. Mater.<\/i>, <strong>4<\/strong>, 7, 1015 - 1021, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adom.201600103' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adom.201600103<\/a><br \/>[195]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#operationalstabilityenhancementinorganiclightemittingdiodeswithultrathinliqinterlayers' class='gray_back'><strong>[374] Operational stability enhancement in organic light-emitting diodes with ultrathin Liq interlayers<\/strong><br \/>Daniel Ping-Kuen Tsang, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Sci. Rep.<\/i>, <strong>6<\/strong>, 22463 , 2016<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/srep22463' target='_blank'>https:\/\/doi.org\/10.1038\/srep22463<\/a><br \/>[105]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#longrangecouplingofelectronholepairsinspatiallyseparatedorganicdonoracceptorlayers' class='gray_back'><strong>[373] Long-range coupling of electron-hole pairs in spatially separated organic donor-acceptor layers<\/strong><br \/>Hajime Nakanotani, Taro Furukawa, Kei Morimoto, Chihaya Adachi<br \/>\n<i>Science Advances<\/i>, <strong>2<\/strong>, 2, e1501470, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1126\/sciadv.1501470' target='_blank'>http:\/\/dx.doi.org\/10.1126\/sciadv.1501470<\/a><br \/>[94]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencyblueorganiclightemittingdiodesbasedonthermallyactivateddelayedfluorescencefromphenoxaphosphineandphenoxathiinderivatives' class='gray_back'><strong>[372] High-Efficiency Blue Organic Light-Emitting Diodes Based on Thermally Activated Delayed Fluorescence from Phenoxaphosphine and Phenoxathiin Derivatives<\/strong><br \/>Sae Youn Lee, Chihaya Adachi, Takuma Yasuda<br \/>\n<i>Adv. Mater.<\/i>, <strong>28<\/strong>, 23, 4626 - 4631 , 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adma.201506391' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adma.201506391<\/a><br \/>[175]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientsolutionprocessedhostfreeorganiclightemittingdiodesshowinganexternalquantumefficiencyofnearly18withathermallyactivateddelayedfluorescenceemitte' class='gray_back'><strong>[371] Highly efficient solution-processed host-free organic light-emitting diodes showing an external quantum efficiency of nearly 18% with a thermally activated delayed fluorescence emitter<\/strong><br \/>Yoshimasa Wada, Katsuyuki Shizu, Shosei Kubo, Tatsuya Fukushima, Takuya Miwa, Hiroyuki Tanaka, Chihaya Adachi, Hironori Kaji<br \/>\n<i>Appl. Phys. Exp.<\/i>, <strong>9<\/strong>, 32102, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.7567\/APEX.9.032102' target='_blank'>http:\/\/dx.doi.org\/10.7567\/APEX.9.032102<\/a><br \/>[28]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#quasicontinuouswaveorganicthinfilmdistributedfeedbacklaser' class='gray_back'><strong>[370] Quasi-Continuous-Wave Organic Thin-film Distributed Feedback Laser<\/strong><br \/>Atula S. D. Sandanayaka, Kou Yoshida, Munetomo Inoue, Chuanjiang Qin, Kenichi Goushi, Jean-Charles Ribierre,  Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>4<\/strong>, 6, 834 - 839, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adom.201600006' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adom.201600006<\/a><br \/>[46]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivateddelayedfluorescencepolymersforefficientsolutionprocessedorganiclightemittingdiodes' class='gray_back'><strong>[369] Thermally Activated Delayed Fluorescence Polymers for Efficient Solution-Processed Organic Light-Emitting Diodes<\/strong><br \/>Sae Youn Lee, Takuma Yasuda, Hideaki Komiyama, Jiyoung Lee, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>28<\/strong>, 21, 4019 - 4024 , 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adma.201505026' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adma.201505026<\/a><br \/>[228]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#processinganddopingofthickpolymeractivelayersforflexibleorganicthermoelectricmodules' class='gray_back'><strong>[368] Processing and doping of thick polymer active layers for flexible organic thermoelectric modules<\/strong><br \/>Sunbin Hwang, William J. Potscavage, Ryosuke Nakamichi, Chihaya Adachi<br \/>\n<i>Org. Elect.<\/i>, <strong>31<\/strong>, 31 - 40, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.orgel.2016.01.007' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.orgel.2016.01.007<\/a><br \/>[52]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#seamlessgrowthofasupramolecularcarpet' class='gray_back'><strong>[367] Seamless growth of a supramolecular carpet<\/strong><br \/>Ju-Hyung Kim, Jean-Charles Ribierre, Yu Seok Yang, Chihaya Adachi , Maki Kawai, Jaehoon Jung, Takanori Fukushima, Yousoo Kim\t<br \/>\n<i>Nature Communications<\/i>, <strong>7<\/strong>, 10653, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1038\/ncomms10653' target='_blank'>http:\/\/dx.doi.org\/10.1038\/ncomms10653<\/a><br \/>[11]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#quantificationoftemperatureriseinunipolarorganicconductorsduringshortvoltagepulseexcitationusingelectricaltestingmethods' class='gray_back'><strong>[366] Quantification of temperature rise in unipolar organic conductors during short voltage-pulse excitation using electrical testing methods<\/strong><br \/>Kou Yoshida, Toshinori Matsushima, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Org. Elect.<\/i>, <strong>31<\/strong>, 191 - 197, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.orgel.2016.01.033' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.orgel.2016.01.033<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#fullcolordelayedfluorescencematerialsbasedonwedgeshapedphthalonitrilesanddicyanopyrazinessystematicdesigntunablephotophysicalpropertiesandoledperformance' class='gray_back'><strong>[365] Full-Color Delayed Fluorescence Materials Based on Wedge-Shaped Phthalonitriles and Dicyanopyrazines: Systematic Design, Tunable Photophysical Properties, and OLED Performance<\/strong><br \/>In Seob Park, Sae Youn Lee, Chihaya Adachi, Takuma Yasuda<br \/>\n<i>Adv. Func. Mat.<\/i>, <strong>26<\/strong>, 11, 1813 - 1821 , 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adfm.201505106' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adfm.201505106<\/a><br \/>[215]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#currentenhancementinorganicfilmsthroughgapcompressionbycoldandhotisostaticpressing' class='gray_back'><strong>[364] Current Enhancement in Organic Films through Gap Compression by Cold and Hot Isostatic Pressing<\/strong><br \/>Yu Esaki, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Adv. Func. Mat.<\/i>, <strong>26<\/strong>, 2940 - 2949, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adfm.201505190' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adfm.201505190<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photophysicalpropertiesandefficientstableelectrogeneratedchemiluminescenceofdonoracceptormoleculesexhibitingthermalspinupconversion' class='gray_back'><strong>[363] Photophysical Properties and Efficient Stable Electrogenerated Chemiluminescence of Donor-Acceptor Molecules Exhibiting Thermal Spin Up-Conversion<\/strong><br \/>Ryoichi Ishimatsu, Tomohiko Edura, Chihaya Adachi, Koji Nakano, Toshihiko Imato<br \/>\n<i>Chemistry - A European Journal<\/i>, <strong>22<\/strong>, 14, 4889 - 4898 , 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/chem.201600077' target='_blank'>http:\/\/dx.doi.org\/10.1002\/chem.201600077<\/a><br \/>[41]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#effectofjouleheatingontransientcurrentandelectroluminescenceinpinorganiclightemittingdiodesunderpulsedvoltageoperation' class='gray_back'><strong>[362] Effect of Joule heating on transient current and electroluminescence in p-i-n organic light-emitting diodes under pulsed voltage operation<\/strong><br \/>Kou Yoshida, Hajime  Nakanotani, Chihaya Adachi<br \/>\n<i>Org. Elect.<\/i>, <strong>31<\/strong>,  287 - 294, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.orgel.2016.01.039' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.orgel.2016.01.039<\/a><br \/>[23]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#degradationmechanismsofsolutionprocessedplanarperovskitesolarcellsthermallystimulatedcurrentmeasurementforanalysisofcarriertraps' class='gray_back'><strong>[361] Degradation Mechanisms of Solution-Processed Planar Perovskite Solar Cells: Thermally Stimulated Current Measurement for Analysis of Carrier Traps<\/strong><br \/>Chuanjiang Qin, Toshinori Matsushima, Takashi Fujihara, William J. Potscavage, Jr., Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>28<\/strong>, 466 - 471, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adma.201502610' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adma.201502610<\/a><br \/>[99]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#effectofreverseintersystemcrossingratetosuppressefficiencyrolloffinorganiclightemittingdiodeswiththermallyactivateddelayedfluorescenceemitters' class='gray_back'><strong>[360] Effect of reverse intersystem crossing rate to suppress efficiency roll-off in organic light-emitting diodes with thermally activated delayed fluorescence emitters<\/strong><br \/>Munetomo Inoue, Tomas Serevi\u010dius, Hajime Nakanotani, Kou Yoshida, Toshinori Matsushima, Saulius Jursenas, Chihaya Adachi<br \/>\n<i>Chem. Phys. Lett.<\/i>, <strong>644<\/strong>, 62 - 67, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.cplett.2015.11.042' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.cplett.2015.11.042<\/a><br \/>[90]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#aftergloworganiclightemittingdiode' class='gray_back'><strong>[359] Afterglow Organic Light-Emitting Diode<\/strong><br \/>Ryota Kabe, Naoto Notsuka, Kou Yoshida, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>28<\/strong>, 655 - 660, 2016<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adma.201504321' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adma.201504321<\/a><br \/>[359]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowthresholdamplifiedspontaneousemissionandambipolarchargetransportinhighlyfluorescentnonvolatilesolventfreeliquidfluorenederivatives' class='gray_back'><strong>[358] Low threshold amplified spontaneous emission and ambipolar charge transport in highly fluorescent non-volatile solvent-free liquid fluorene derivatives<\/strong><br \/>Jean-Charles Ribierre, Li Zhao, Munetomo Inoue, Pierre-Olivier Schwartz, Ju-Hyung Kim, Kou Yoshida, Atula S. D. Sandanayaka, Hajime Nakanotani, Loic Mager, Stephane Mery, Chihaya Adachi<br \/>\n<i>Chem. Comm.<\/i>, <strong>52<\/strong>, 3103 - 3106, 2016<br \/>DOI: <a href=' http:\/\/dx.doi.org\/10.1039\/C5CC08331A' target='_blank'> http:\/\/dx.doi.org\/10.1039\/C5CC08331A<\/a><br \/>[28]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2015'>2015<\/h4><div rel='#improvementofthelightoutcouplingefficiencyoforganiclightemittingdiodesusingahemisphericallensandamultipatternedonedimensionalphotoniccrystalfabricatedbyautocloning' class='gray_back'><strong>[357] Improvement of the light outcoupling efficiency of organic light-emitting diodes using a hemispherical lens and a multi-patterned one-dimensional photonic crystal fabricated by autocloning<\/strong><br \/>Hiroshi Fujimoto, Masayuki Yahiro, Takayuki Kawashima, Keisuke Konno, Qiang Chen, Kunio Sawaya, Shojiro Kawakami, Chihaya Adachi<br \/>\n<i>Appl. Phys. Exp.<\/i>, <strong>8<\/strong>, 82102, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.7567\/APEX.8.082102' target='_blank'>http:\/\/dx.doi.org\/10.7567\/APEX.8.082102<\/a><br \/>[11]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#singlettripletexcitonannihilationnearlysuppressedinorganicsemiconductorlasermaterialsusingoxygenastripletquencher2' class='gray_back'><strong>[356] Singlet-triplet exciton annihilation nearly suppressed in organic semiconductor laser materials using oxygen as triplet quencher<\/strong><br \/>Li Zhao, Munetomo Inoue, Kou Yoshida, Atula S. D. Sandanayaka, Ju-Hyung Kim, Jean-Charles Ribierre, Chihaya Adachi<br \/>\n<i> IEEE Journal of Selected Topics in Quantum Electronics<\/i>, <strong>22<\/strong>, 1, 1 - 9, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1109\/JSTQE.2015.2473138 ' target='_blank'>http:\/\/dx.doi.org\/10.1109\/JSTQE.2015.2473138 <\/a><br \/>[22]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencyskyblueorganiclightemittingdiodesutilizingthermallyactivateddelayedfluorescence' class='gray_back'><strong>[355] High-efficiency sky-blue organic light-emitting diodes utilizing thermally-activated delayed fluorescence<\/strong><br \/>Yasuhide Hiraga, Jun-ichi Nishide, Hajime Nakanotani, Masaki Aonuma, Chihaya Adachi<br \/>\n<i>IEICE Transactions<\/i>, <strong>E98-C<\/strong>, 10, 971 - 976, 2015<br \/>DOI: <a href='http:\/\/doi.org\/10.1587\/transele.E98.C.971' target='_blank'>http:\/\/doi.org\/10.1587\/transele.E98.C.971<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#degradationmechanismsoforganiclightemittingdiodesbasedonthermallyactivateddelayedfluorescencemolecules' class='gray_back'><strong>[354] Degradation Mechanisms of Organic Light-Emitting Diodes Based on Thermally Activated Delayed Fluorescence Molecules<\/strong><br \/>Atula S. D. Sandanayaka, Toshinori  Matsushima, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>119<\/strong>, 42,  23845 - 23851, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/acs.jpcc.5b07084' target='_blank'>http:\/\/dx.doi.org\/10.1021\/acs.jpcc.5b07084<\/a><br \/>[104]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#triarylboron%e2%80%90basedfluorescentorganiclight%e2%80%90emittingdiodeswithexternalquantumefficienciesexceeding20%e2%80%89' class='gray_back'><strong>[353] Triarylboron-Based Fluorescent Organic Light-Emitting Diodes with External Quantum Efficiencies Exceeding 20\u2009%<\/strong><br \/>Katsuaki Suzuki, Shosei Kubo, Katsuyuki Shizu, Tatsuya Fukushima, Atsushi Wakamiya, Yasujiro Murata, Chihaya Adachi, Hironori Kaji<br \/>\n<i>Angew. Chem. Int. Ed.<\/i>, <strong>54<\/strong>, 50, 15231 - 15235, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.201508270' target='_blank'>https:\/\/doi.org\/10.1002\/anie.201508270<\/a><br \/>[259]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlystablenearinfraredfluorescentorganicnanoparticleswithalargestokesshiftfornoninvasivelongtermcellularimaging' class='gray_back'><strong>[352] Highly Stable Near-Infrared Fluorescent Organic Nanoparticles with a Large Stokes Shift for Noninvasive Long-Term Cellular Imaging<\/strong><br \/>Jinfeng Zhang, Rui Chen, Zhelin Zhu, Chihaya Adachi, Xiaohong Zhang, Chun-Sing Lee<br \/>\n<i>ACS Applied Materials & Interfaces<\/i>, <strong>7<\/strong>, 47, 26266 - 26274, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/acsami.5b08539' target='_blank'>http:\/\/dx.doi.org\/10.1021\/acsami.5b08539<\/a><br \/>[45]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientelectroluminescencefromasolutionprocessablethermallyactivateddelayedfluorescenceemitter' class='gray_back'><strong>[351] Highly efficient electroluminescence from a solution-processable thermally activated delayed fluorescence emitter<\/strong><br \/>Yoshimasa Wada, Katsuyuki Shizu, Shosei Kubo, Katsuaki Suzuki, Hiroyuki Tanaka, Chihaya Adachi, Hironori Kaji<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>107<\/strong>, 183303, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4935237 ' target='_blank'>https:\/\/doi.org\/10.1063\/1.4935237 <\/a><br \/>[66]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#purelyorganicelectroluminescentmaterialrealizing100conversionfromelectricitytolight' class='gray_back'><strong>[350] Purely organic electroluminescent material realizing 100% conversion from electricity to light<\/strong><br \/>Hironori Kaji, Hajime Suzuki, Tatsuya Fukushima, Katsuyuki Shizu, Katsuaki Suzuki, Shosei Kubo, Takeshi Komino, Hajime Oiwa, Furitsu Suzuki, Atsushi Wakamiya, Yasujiro Murata, Chihaya Adachi<br \/>\n<i>Nature Communications<\/i>, <strong>6<\/strong>, 8476, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1038\/ncomms9476' target='_blank'>http:\/\/dx.doi.org\/10.1038\/ncomms9476<\/a><br \/>[727]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientblueelectroluminescenceusingdelayedfluorescenceemitterswithlargeoverlapdensitybetweenluminescentandgroundstates' class='gray_back'><strong>[349] Highly Efficient Blue Electroluminescence Using Delayed-Fluorescence Emitters with Large Overlap Density between Luminescent and Ground States<\/strong><br \/>Katsuyuki Shizu, Hiroki Noda, Hiroyuki Tanaka, Masatsugu Taneda, Motoyuki Uejima, Tohru Sato, Kazuyoshi Tanaka, Hironori Kaji, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>119<\/strong>, 47, 26283 - 26289, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/acs.jpcc.5b07798' target='_blank'>http:\/\/dx.doi.org\/10.1021\/acs.jpcc.5b07798<\/a><br \/>[109]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#comparisonoftransientstateandsteadystateexcitonexcitonannihilationratesbasedonforstertypeenergytransfer' class='gray_back'><strong>[348] Comparison of transient state and steady state exciton\u2013exciton annihilation rates based on F\u00f6rster-type energy transfer<\/strong><br \/>Toshiya Yonehara, Kenichi Goushi, Tomoaki Sawabe, Isao Takasu, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys<\/i>, <strong>54<\/strong>, 71601, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.7567\/JJAP.54.071601' target='_blank'>http:\/\/dx.doi.org\/10.7567\/JJAP.54.071601<\/a><br \/>[8]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#suppressionofexternalquantumefficiencyrolloffofnanopatternedorganiclightemittingdiodesathighcurrentdensities' class='gray_back'><strong>[347] Suppression of external quantum efficiency roll-off of nanopatterned organic-light emitting diodes at high current densities<\/strong><br \/>Hiroyuki Kuwae,  Atsushi Nitta, Kou Yoshida, Takashi Kasahara, Toshinori Matsushima, Munetomo Inoue, Shuichi Shoji, Jun Mizuno, Chihaya Adachi<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>118<\/strong>, 155501 , 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4932139' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4932139<\/a><br \/>[27]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#vacuumandsolventfreefabricationoforganicsemiconductorlayersforfieldeffecttransistors' class='gray_back'><strong>[346] Vacuum-and-solvent-free fabrication of organic semiconductor layers for field-effect transistors<\/strong><br \/>Toshinori Matsushima, Atula S. D. Sandanayaka, Yu Esaki, Chihaya Adachi<br \/>\n<i>Sci. Rep.<\/i>, <strong>5<\/strong>, 14547, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1038\/srep14547' target='_blank'>http:\/\/dx.doi.org\/10.1038\/srep14547<\/a><br \/>[17]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#influenceofdepositionsubstratetemperatureonthemorphologyandmolecularorientationofchloroaluminumphthalocyaninefilmsaswelltheperformanceoforganicphotovoltaiccells' class='gray_back'><strong>[345] Influence of deposition substrate temperature on the morphology and molecular orientation of chloroaluminum phthalocyanine films as well the performance of organic photovoltaic cells<\/strong><br \/>Yan-Qiong Zheng, Jing Zhang, Fang Yang, Takeshi Komino, Bin Wei, Jianhua Zhang, Zixing Wang, Wenhong Pu, Changzhu Yang, Chihaya Adachi<br \/>\n<i>Nanotechnology<\/i>, <strong>26<\/strong>, 405202, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1088\/0957-4484\/26\/40\/405202' target='_blank'>http:\/\/dx.doi.org\/10.1088\/0957-4484\/26\/40\/405202<\/a><br \/>[10]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#materialdegradationofliquidorganicsemiconductorsanalyzedbynuclearmagneticresonancespectroscopy' class='gray_back'><strong>[344] Material degradation of liquid organic semiconductors analyzed by nuclear magnetic resonance spectroscopy<\/strong><br \/>Tatsuya Fukushima, Junichi Yamamoto, Masashi Fukuchi, Shuzo Hirata, Heo Hyo Jung, Osamu Hirata, Yuki Shibano, Chihaya Adachi, Hironori Kaji<br \/>\n<i>AIP ADVANCES<\/i>, <strong>5<\/strong>, 87124, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4928515' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4928515<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#morphologicalcontroloforganicinorganicperovskitelayersbyhotisostaticpressingforefficientplanarsolarcells' class='gray_back'><strong>[343] Morphological control of organic\u2013inorganic perovskite layers by hot isostatic pressing for efficient planar solar cells<\/strong><br \/>Toshinori Matsushima, Takashi Fujihara, Chuanjiang Qin, Shinobu Terakawa, Yu Esaki, Sunbin Hwang, Atula S. D. Sandanayaka, William J. Potscavage, Jr., Chihaya Adachi<br \/>\n<i>J. Mater. Chem. A<\/i>, <strong>3<\/strong>, 17780 - 17787, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/C5TA03796D ' target='_blank'>http:\/\/dx.doi.org\/10.1039\/C5TA03796D <\/a><br \/>[29]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#influenceoftheatmosphereonorganicorganicinterfaciallayersanddeteriorationinorganiclightemittingdiodes' class='gray_back'><strong>[342] Influence of the atmosphere on organic\u2013organic interfacial layers and deterioration in organic light-emitting diodes<\/strong><br \/>Hirofumi Nakamura, Seong-Hee Noh, Miki Kuribayashi, Chihaya Adachi<br \/>\n<i> Journal of the Society for Information Display<\/i>, <strong>23<\/strong>, 3, 129 - 137, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/jsid.318' target='_blank'>http:\/\/dx.doi.org\/10.1002\/jsid.318<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#%e3%82%ac%e3%82%b9%e3%83%95%e3%83%ad%e3%83%bc%e8%92%b8%e7%9d%80%e6%b3%95%e3%81%ab%e3%82%88%e3%82%8b%e9%ab%98%e7%b4%94%e5%ba%a6%e6%9c%89%e6%a9%9f%e8%96%84%e8%86%9c%e3%81%ae%e5%a4%a7%e9%9d%a2%e7%a9%8d' class='gray_back'><strong>[341] \u30ac\u30b9\u30d5\u30ed\u30fc\u84b8\u7740\u6cd5\u306b\u3088\u308b\u9ad8\u7d14\u5ea6\u6709\u6a5f\u8584\u819c\u306e\u5927\u9762\u7a4d\u6210\u819c\u6280\u8853<\/strong><br \/>\u6c5f\u9762 \u77e5\u5f66, \u7d99\u7530 \u6d69\u5e73, \u5b89\u9054 \u5343\u6ce2\u77e2<br \/>\n<i>Journal of the Vacuum Society of Japan<\/i>, <strong>58<\/strong>, 3, 79 - 85, 2015<br \/>DOI: <a href='http:\/\/doi.org\/10.3131\/jvsj2.58.79' target='_blank'>http:\/\/doi.org\/10.3131\/jvsj2.58.79<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organiclightemittingdiodesbasedondonorsubstitutedphthalimideandmaleimidefluorophores' class='gray_back'><strong>[340] Organic Light-Emitting Diodes Based on Donor-Substituted Phthalimide and Maleimide Fluorophores<\/strong><br \/>Myung Eun Jang, Takuma Yasuda , Jiyoung Lee, Sae Youn Lee, Chihaya Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>44<\/strong>, 9, 1248 - 1250 , 2015<br \/>DOI: <a href='http:\/\/doi.org\/10.1246\/cl.150454' target='_blank'>http:\/\/doi.org\/10.1246\/cl.150454<\/a><br \/>[28]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lightamplificationinanorganicsolidstatefilmwiththeaidoftriplettosingletupconversion' class='gray_back'><strong>[339] Light amplification in an organic solid-state film with the aid of triplet to singlet upconversion<\/strong><br \/>Hajime Nakanotani, Taro Furukawa, chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>3<\/strong>, 10, 1381 - 1388, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adom.201500236' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adom.201500236<\/a><br \/>[44]:Number of citation <br \/><a href=\"http:\/\/www.materialsviews.com\/advanced-optical-materials-top-5-sept-2015\/\">Top Five Articles on Advanced Optical Materials<\/a> <font color=\"red\">9\u6708\u306eTop Five Articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br>\r\n<a href=\"http:\/\/www.materialsviews.com\/best-of-advanced-optical-materials-2015\/\">the Best of Advanced Optical Materials \u2013 2015<\/a> <font color=\"red\">the Best of Advanced Optical Materials \u2013 2015\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientelectroluminescencefrompurelyorganicdonoracceptorsystems' class='gray_back'><strong>[338] Highly efficient electroluminescence from purely organic donor\u2013acceptor systems<\/strong><br \/>Katsuyuki Shizu,  Jiyoung Lee, Hiroyuki Tanaka, Hiroko Nomura, Takuma Yasuda, Hironori Kaji, Chihaya Adachi<br \/>\n<i>Pure and Applied Chemistry<\/i>, <strong>87<\/strong>, 7, 627 - 638, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1515\/pac-2015-0301' target='_blank'>http:\/\/dx.doi.org\/10.1515\/pac-2015-0301<\/a><br \/>[42]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#ambipolarorganicfieldeffecttransistorsbasedonsolutionprocessedsinglecrystalmicrowiresofaquinoidaloligothiophenederivative2' class='gray_back'><strong>[337] Ambipolar organic field-effect transistors based on solution-processed single crystal microwires of a quinoidal oligothiophene derivative<\/strong><br \/>J. C. Ribierre,  L. Zhao, S. Furukawa, T. Kikitsu, D. Inoue, A. Muranaka,  K. Takaishi, T. Muto, S. Matsumoto,  D. Hashizume, M. Uchiyama, P. Andr\u00e9, C. Adachi, T. Aoyama<br \/>\n<i>Chem. Comm.<\/i>, <strong>51<\/strong>, 5836 - 5839, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/C4CC09608H ' target='_blank'>http:\/\/dx.doi.org\/10.1039\/C4CC09608H <\/a><br \/>[30]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencypurebluethermallyactivateddelayedfluorescencemoleculeshaving10hphenoxaborinandacridanunits' class='gray_back'><strong>[336] High efficiency pure blue thermally activated delayed fluorescence molecules having 10H-phenoxaborin and acridan units<\/strong><br \/>Masaki Numata, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>Chem. Comm.<\/i>, <strong>51<\/strong>, 9443, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/C5CC00307E ' target='_blank'>http:\/\/dx.doi.org\/10.1039\/C5CC00307E <\/a><br \/>[273]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#tetraphenyldibenzoperiflantheneassensitizerforenhancingtheperformanceindinaphthothienothiophenebasedphotovoltaicswithandwithoutfullerene' class='gray_back'><strong>[335] Tetraphenyldibenzoperiflanthene as sensitizer for enhancing the performance in dinaphthothienothiophene-based photovoltaics with and without fullerene<\/strong><br \/>Yan-qiong Zheng, William J. Potscavage, Jr., Jing Zhang, Takuma Yasuda, Bin Wei, Chihaya Adachi <br \/>\n<i>Synth. Met.<\/i>, <strong>205<\/strong>, 121 - 126, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.synthmet.2015.04.002' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.synthmet.2015.04.002<\/a><br \/>[9]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#uniformaerosoljetprintedpolymerlineswith30%ce%bcmwidthfor140ppiresolutionrgborganiclightemittingdiodes' class='gray_back'><strong>[334] Uniform Aerosol Jet printed polymer lines with 30 \u03bcm width for 140 ppi resolution RGB organic light emitting diodes<\/strong><br \/>Jeffrey G. Tait, Ewelina Witkowska, Masaya Hirade, Tung-Huei Ke, Pawel E. Malinowski, Soeren Steudel, Chihaya Adachi, Paul Heremans<br \/>\n<i>Org. Elect.<\/i>, <strong>22<\/strong>, 40 - 43, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.orgel.2015.03.034' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.orgel.2015.03.034<\/a><br \/>[64]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#%e3%83%9e%e3%82%a4%e3%82%af%e3%83%ad%e6%b5%81%e4%bd%93%e9%9b%bb%e6%b0%97%e5%8c%96%e5%ad%a6%e7%99%ba%e5%85%89%e7%b4%a0%e5%ad%90%e3%82%92%e5%8a%b1%e8%b5%b7%e5%85%89%e6%ba%90%e3%81%a8%e3%81%97%e3%81%a6' class='gray_back'><strong>[333] \u30de\u30a4\u30af\u30ed\u6d41\u4f53\u96fb\u6c17\u5316\u5b66\u767a\u5149\u7d20\u5b50\u3092\u52b1\u8d77\u5149\u6e90\u3068\u3057\u3066\u7528\u3044\u305f\u30dd\u30fc\u30bf\u30d6\u30eb\u86cd\u5149\u691c\u51fa\u30c7\u30d0\u30a4\u30b9\u306e\u4f5c\u88fd<\/strong><br \/>\u6d25\u8107 \u7f8e\u5e06, \u7b20\u539f \u5d07\u53f2 , \u6c5f\u9762 \u77e5\u5f66 , \u5927\u5cf6 \u5bff\u90ce , \u570b\u6fa4 \u6804\u91cc, \u77f3\u677e \u4eae\u4e00, \u677e\u6ce2 \u6210\u884c , \u4eca\u4efb \u7a14\u5f66, \u5b89\u9054 \u5343\u6ce2\u77e2, \u5e84\u5b50 \u7fd2\u4e00, \u6c34\u91ce \u6f64<br \/>\n<i>\u96fb\u6c17\u5b66\u4f1a\u8ad6\u6587\u8a8c<\/i>, <strong>135<\/strong>, 6, 230 - 235, 2015<br \/>DOI: <a href='http:\/\/doi.org\/10.1541\/ieejsmas.135.230' target='_blank'>http:\/\/doi.org\/10.1541\/ieejsmas.135.230<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#excitonquenchingbehaviorofthermallyactivateddelayedfluorescencemoleculesbychargecarriers' class='gray_back'><strong>[332] Exciton Quenching Behavior of Thermally Activated Delayed Fluorescence Molecules by Charge Carriers<\/strong><br \/>Atula Sandanayaka, Kou Yoshida, Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>119<\/strong>, 14, 7631 - 7636, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/acs.jpcc.5b01314' target='_blank'>http:\/\/dx.doi.org\/10.1021\/acs.jpcc.5b01314<\/a><br \/>[26]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#dualenhancementofelectroluminescenceefficiencyandoperationalstabilitybyrapidupconversionoftripletexcitonsinoleds' class='gray_back'><strong>[331] Dual enhancement of electroluminescence efficiency and operational stability by rapid upconversion of triplet excitons in OLEDs<\/strong><br \/>Taro Furukawa, Hajime Nakanotani, Munetomo Inoue, Chihaya Adachi<br \/>\n<i>Sci. Rep. <\/i>, <strong>5<\/strong>, 8429, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1038\/srep08429' target='_blank'>http:\/\/dx.doi.org\/10.1038\/srep08429<\/a><br \/>[200]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencythermallyactivateddelayedfluorescencebasedon135tris4diphenylaminophenyl246tricyanobenzene' class='gray_back'><strong>[330] High efficiency thermally activated delayed fluorescence based on 1,3,5-tris(4-(diphenylamino) phenyl)-2,4,6-tricyanobenzene<\/strong><br \/>Masatsugu Taneda, Katsuyuki Shizu, Hiroyuki Tanaka, Chihaya Adachi<br \/>\n<i>Chem. Comm. <\/i>, <strong>51<\/strong>, 5028 - 5031, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/c5cc00511f' target='_blank'>http:\/\/dx.doi.org\/10.1039\/c5cc00511f<\/a><br \/>[66]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#introductionofoxygenintoorganicthinfilmswiththeaimofsuppressingsinglettripletannihilation' class='gray_back'><strong>[329] Introduction of Oxygen into Organic Thin Films with the Aim of Suppressing Singlet-Triplet Annihilation<\/strong><br \/>Munetomo  Inoue, Toshinori  Matsushima, Hajime  Nakanotani, Chihaya Adachi<br \/>\n<i>Chem. Phys. Lett.<\/i>, <strong>624<\/strong>, 43 - 46, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.cplett.2015.02.010' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.cplett.2015.02.010<\/a><br \/>[14]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#laserinducedmicropatterningoforganicsemiconductorlayersforuseinorganiclightemittingdiodedisplays' class='gray_back'><strong>[328] Laser-Induced Micro-Patterning of Organic Semiconductor Layers for Use in Organic Light- Emitting Diode Displays<\/strong><br \/>Masahiro Misaki, Asami Toba, Daisuke Goto, Chihaya Adachi, Yasuko Koshiba, Kenji Ishida, Yasukiyo Ueda<br \/>\n<i>ITE Transactions on Media Technology and Applications<\/i>, <strong>3<\/strong>, 2, 143 - 148, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.3169\/mta.3.143' target='_blank'>https:\/\/doi.org\/10.3169\/mta.3.143<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#multicolormicrofluidicorganiclightemittingdiodesbasedonondemandemittinglayersofpyrenebasedliquidorganicsemiconductorswithfluorescentguestdopants' class='gray_back'><strong>[327] Multi-color microfluidic organic light-emitting diodes based on on-demand emitting layers of pyrene-based liquid organic semiconductors with fluorescent guest dopants<\/strong><br \/>Takashi Kasahara, Shigeyuki Matsunami, Tomohiko Edura, Ryoichi Ishimatsu, Juro Oshima, Miho Tsuwaki, Toshihiko Imato, Shuichi Shoji, Chihaya Adachi, Jun Mizuno<br \/>\n<i>Sens. Actuators B<\/i>, <strong>207<\/strong>, 481 - 489, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.snb.2014.09.101' target='_blank'>https:\/\/doi.org\/10.1016\/j.snb.2014.09.101<\/a><br \/>[48]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#horizontalmolecularorientationinsolutionprocessedorganiclightemittingdiodes' class='gray_back'><strong>[326] Horizontal molecular orientation in solution-processed organic light-emitting diodes<\/strong><br \/>Zhao Li, Takeshi Komino, Munetomo Inoue, J.-H. Kim, Jean-Charles Ribierre, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>106<\/strong>, 63301, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4907890' target='_blank'>https:\/\/doi.org\/10.1063\/1.4907890<\/a><br \/>[34]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencywhiteorganiclightemittingdiodesbasedonabluethermallyactivateddelayedfluorescentemittercombinedwithgreenandredfluorescentemitters' class='gray_back'><strong>[325] High-efficiency White Organic Light-emitting Diodes based on a Blue Thermally Activated Delayed Fluorescent Emitter Combined with Green and Red Fluorescent Emitters<\/strong><br \/>Takahiro Higuchi, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>27<\/strong>, 12, 2019 - 2023, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.201404967' target='_blank'>https:\/\/doi.org\/10.1002\/adma.201404967<\/a><br \/>[219]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#nearly100internalquantumefficiencyinundopedelectroluminescentdevicesemployingpureorganicemitters' class='gray_back'><strong>[324] Nearly 100% Internal Quantum Efficiency in Undoped Electroluminescent Devices Employing Pure Organic Emitters<\/strong><br \/>Qisheng Zhang, Daniel Tsang, Hirokazu Kuwabara, Yasuhiro Hatae, Bo Li, Takehiro Takahashi, Sae Youn Lee, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>Adv. Mater. <\/i>, <strong>27<\/strong>, 12, 2096 - 2100, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adma.201405474' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adma.201405474<\/a><br \/>[470]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#tunableandflexiblesolventfreeliquidorganicdistributedfeedbacklasers' class='gray_back'><strong>[323] Tunable and flexible solvent-free liquid organic distributed feedback lasers<\/strong><br \/>Ju-Hyung Kim, Munetomo Inoue, Li Zhao, Takeshi Komino, Soonmin Seo, Jean-Charles Ribierre, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>106<\/strong>, 53302, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4907323' target='_blank'>https:\/\/doi.org\/10.1063\/1.4907323<\/a><br \/>[32]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#effectofatomsubstitutioninchalcogenodiazolecontainingthermallyactivateddelayedfluorescenceemittersonradiationlesstransition' class='gray_back'><strong>[322] Effect of Atom Substitution in Chalcogenodiazole-Containing Thermally Activated Delayed Fluorescence Emitters on Radiationless Transition<\/strong><br \/>Hiroyuki Tanaka, Katsuyuki Shizu, Jiyoung Lee, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>119<\/strong>, 2948 - 2955, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/jp510751n' target='_blank'>https:\/\/doi.org\/10.1021\/jp510751n<\/a><br \/>[50]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#suppressionofrolloffcharacteristicsoforganiclightemittingdiodesbynarrowingcurrentinjectiontransportareato50nm' class='gray_back'><strong>[321] Suppression of roll-off characteristics of organic light-emitting diodes by narrowing current injection\/transport area to 50 nm<\/strong><br \/>Kyohei Hayashi, Hajime Nakanotani, Munetomo Inoue, Kou Yoshida, Oleksandr Mikhnenko, Thuc-Quyen Nguyen, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.,<\/i>, <strong>106<\/strong>, 93301, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4913461' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4913461<\/a><br \/>[44]:Number of citation <br \/><a href=\"http:\/\/scitation.aip.org\/content\/aip\/journal\/apl\">Most Read Articles<\/a> <font color=\"red\">5\u6708\u306eMost Read Articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#xshapedbenzoylbenzophenonederivativeswithcrosseddonorsandacceptorsforhighlyefficientthermallyactivateddelayedfluorescence' class='gray_back'><strong>[320] X-shaped benzoylbenzophenone derivatives with crossed donors and acceptors for highly efficient thermally activated delayed fluorescence<\/strong><br \/>Sae Youn Lee, Takuma Yasuda, In Seob Park, Chihaya Adachi<br \/>\n<i>Dalton Transactions<\/i>, <strong>44<\/strong>, 8356 - 8359, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C4DT03608E' target='_blank'>https:\/\/doi.org\/10.1039\/C4DT03608E<\/a><br \/>[61]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#zinccomplexesexhibitinghighlyefficientthermallyactivateddelayedfluorescenceandtheirapplicationtoorganiclightemittingdiodes' class='gray_back'><strong>[319] Zinc complexes exhibiting highly efficient thermally activated delayed fluorescence and their application to organic light-emitting diodes<\/strong><br \/>Yumi Sakai, Yuta Sagara, Hiroko Nomura, Nozomi Nakamura, Yoshitake Suzuki, Hiroshi Miyazaki, Chihaya Adachi<br \/>\n<i>Chem. Comm.<\/i>, <strong>15<\/strong>, 3181 - 3184, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C4CC09403D' target='_blank'>https:\/\/doi.org\/10.1039\/C4CC09403D<\/a><br \/>[76]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#controlledemissioncolorandsinglettripletenergygapofdihydrophenazinebasedthermallyactivateddelayedfluorescenceemitters' class='gray_back'><strong>[318] Controlled emission color and singlet-triplet energy gap of dihydrophenazine-based thermally activated delayed fluorescence emitters<\/strong><br \/>Jiyoung Lee, Katsuyuki Shizu, Hiroyuki Tanaka, Hajime Nakanotani, Takuma Yasuda, Hironori Kaji, Chihaya Adachi<br \/>\n<i>J. Mater. Chem. C<\/i>, <strong>3<\/strong>, 2175 - 2181, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C4TC02530J' target='_blank'>https:\/\/doi.org\/10.1039\/C4TC02530J<\/a><br \/>[133]:Number of citation <br \/><a href=\"http:\/\/pubs.rsc.org\/en\/journals\/journalissues\/tc#!mostreadarticles\">Most Read Articles<\/a> <font color=\"red\">1\u6708\u306eMost Read Articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#chargecarrierdynamicsanddegradationphenomenainorganiclightemittingdiodesdopedbyathermallyactivateddelayedfluorescenceemitter' class='gray_back'><strong>[317] Charge Carrier Dynamics and Degradation Phenomena in Organic Light-emitting Diodes Doped by a Thermally Activated Delayed Fluorescence Emitter<\/strong><br \/>Yutaka Noguchi, Hyung-Jun Kim, Ryuta Ishino, Kenichi Goushi, Chihaya Adachi, Yasuo Nakayama, Hisao Ishii<br \/>\n<i>Org. Elect.<\/i>, <strong>17<\/strong>, 184 - 191, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.orgel.2014.12.009' target='_blank'>https:\/\/doi.org\/10.1016\/j.orgel.2014.12.009<\/a><br \/>[38]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#fluorometricflowimmunoassayforalkylphenolpolyethoxylatesonamicrochipcontainingafluorescencedetectorcomprisedofanorganiclightemittingdiodeandanorganicphotodiode2' class='gray_back'><strong>[316] Fluorometric flow-immunoassay for alkylphenol polyethoxylates on a microchip containing a fluorescence detector comprised of an organic light emitting diode and an organic photodiode<\/strong><br \/>Rong Liu, Ryoichi Ishimatsu, Masayuki Yahiro, Chihaya Adachi, Koji Nakano, Toshihiko Imato<br \/>\n<i>Talanta<\/i>, <strong>134<\/strong>, 37 - 47, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.talanta.2014.10.055' target='_blank'>https:\/\/doi.org\/10.1016\/j.talanta.2014.10.055<\/a><br \/>[16]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photometricflowinjectiondeterminationofphosphateonapdms2' class='gray_back'><strong>[315] Photometric flow injection determination of phosphate on a PDMS microchip using an optical detection system assembled with an organic light emitting diode and an organic photodiode<\/strong><br \/>Rong Liua, Ryoichi Ishimatsu, Masayuki Yahiro, Chihaya Adachi, Koji Nakano, Toshihiko Imato<br \/>\n<i>Talanta<\/i>, <strong>132<\/strong>, 96 - 105, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.talanta.2014.08.057' target='_blank'>https:\/\/doi.org\/10.1016\/j.talanta.2014.08.057<\/a><br \/>[19]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancedelectroluminescencefromathermallyactivateddelayedfluorescenceemitterbysuppressingnonradiativedecay' class='gray_back'><strong>[314] Enhanced Electroluminescence from a Thermally Activated Delayed Fluorescence Emitter by Suppressing Non-radiative Decay<\/strong><br \/>Katsuyuki Shizu, Motoyuki Uejima, Hiroko Nomura, Tohru Sato, Kazuyoshi Tanaka, Hironori Kaji, Chihaya Adachi<br \/>\n<i>Physical Review Applied<\/i>, <strong>3<\/strong>, 14001, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1103\/PhysRevApplied.3.014001' target='_blank'>https:\/\/doi.org\/10.1103\/PhysRevApplied.3.014001<\/a><br \/>[81]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#alightemittingmechanismfororganiclightemittingdiodesmoleculardesignforinvertedsinglettripletstructureandsymmetrycontrolledthermallyactivateddelayedfluorescence' class='gray_back'><strong>[313] A Light-Emitting Mechanism for Organic Light-Emitting Diodes: Molecular Design for Inverted Singlet-Triplet Structure and Symmetry-Controlled Thermally Activated Delayed Fluorescence<\/strong><br \/>Tohru Sato, Motoyuki Uejima, Kazuyoshi Tanaka, Hironori Kaji, Chihaya Adachi<br \/>\n<i>J. Mater. Chem. C<\/i>, <strong>3<\/strong>, 870 - 878, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C4TC02320J' target='_blank'>https:\/\/doi.org\/10.1039\/C4TC02320J<\/a><br \/>[47]:Number of citation <br \/><a href=\"http:\/\/pubs.rsc.org\/en\/journals\/journalissues\/tc#!mostreadarticles\">Most Read Articles<\/a> <font color=\"red\">1\u6708\u306eMost Read Articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#astrategyfordesigningelectrondonorsforthermallyactivateddelayedfluorescenceemitters' class='gray_back'><strong>[312] Strategy for Designing Electron Donors for Thermally Activated Delayed Fluorescence Emitters<\/strong><br \/>Katsuyuki Shizu, Hiroyuki Tanaka, Motoyuki Uejima, Tohru Sato, Kazuyoshi Tanaka, Hironori Kaji, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>119<\/strong>, 1291 - 1297, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/jp511061t' target='_blank'>https:\/\/doi.org\/10.1021\/jp511061t<\/a><br \/>[142]:Number of citation <br \/><a href=\"http:\/\/pubs.acs.org\/action\/showMostReadArticles?journalCode=jpccck&topArticlesType=month\">Most Read Articles<\/a> <font color=\"red\">1\u6708\u306eMost Read Articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br>\r\n<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#solutionprocessablehostmaterialof13bis339carbazolylphenyl9carbazolylbenzeneanditsapplicationinorganiclightemittingdiodesemployingthermallyactivateddelayedfluorescence' class='gray_back'><strong>[311] A solution-processable host material of 1,3-bis{3-[3-(9-carbazolyl)phenyl]-9-carbazolyl}benzene and its application in organic light-emitting diodes employing thermally activated delayed fluorescence<\/strong><br \/>Yoshitake Suzuki, Qisheng Zhang, Chihaya Adachi<br \/>\n<i>J. Mater. Chem. C<\/i>, <strong>3<\/strong>, 1700 - 1706, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C4TC02211D' target='_blank'>https:\/\/doi.org\/10.1039\/C4TC02211D<\/a><br \/>[71]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientthermallyactivateddelayedfluorescenceemitterswithsmallsinglettripletenergygapandlargeoscillatorstrength' class='gray_back'><strong>[310] Highly Efficient Thermally Activated Delayed Fluorescence Emitters with Small Singlet\u2013Triplet Energy Gap and Large Oscillator Strength<\/strong><br \/>Yuta Sagara, Katsuyuki Shizu, Hiroyuki Tanaka, Hiroshi Miyazaki, Kenichi Goushi, Hironori Kaji, Chihaya Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>44<\/strong>, 360 - 362, 2015<br \/>DOI: <a href='http:\/\/doi.org\/10.1246\/cl.141054' target='_blank'>http:\/\/doi.org\/10.1246\/cl.141054<\/a><br \/>[57]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#metalinkingstrategyforthermallyactivateddelayedfluorescenceemitterswithasmallsinglettripletenergygap' class='gray_back'><strong>[309] Meta-linking Strategy for Thermally Activated Delayed Fluorescence Emitters with a Small Singlet-Triplet Energy Gap<\/strong><br \/>Katsuyuki Shizu, Yumi Sakai, Hiroyuki Tanaka, Shuzo Hirata, Chihaya Adachi, Hironori Kaji<br \/>\n<i>ITE Transactions on Media Technology and Applications<\/i>, <strong>3<\/strong>, 2, 108 - 113, 2015<br \/>DOI: <a href='https:\/\/doi.org\/10.3169\/mta.3.108' target='_blank'>https:\/\/doi.org\/10.3169\/mta.3.108<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientblueelectroluminescencebasedonthermallyactivateddelayedfluorescence' class='gray_back'><strong>[308] Highly efficient blue electroluminescence based on thermally activated delayed fluorescence<\/strong><br \/>Shuzo Hirata, Yumi Sakai, Kensuke Masui, Hiroyuki Tanaka, Sae Youn Lee, Hiroko Nomura, Nozomi Nakamura, Mao Yasumatsu, Hajime Nakanotani, Qisheng Zhang, Katsuyuki Shizu, Hiroshi Miyazaki, Chihaya Adachi<br \/>\n<i>Nature Materials<\/i>, <strong>14<\/strong>, 330 - 336, 2015<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1038\/nmat4154' target='_blank'>http:\/\/dx.doi.org\/10.1038\/nmat4154<\/a><br \/>[1032]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2014'>2014<\/h4><div rel='#enhancementoftheelectricalcharacteristicsofmetalfreephthalocyaninefilmsusingcoldisostaticpressing' class='gray_back'><strong>[307] Enhancement of the electrical characteristics of metal-free phthalocyanine films using cold isostatic pressing<\/strong><br \/>Toshinori Matsushima, Yu Esaki, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>105<\/strong>, 24, 243301, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4904463' target='_blank'>https:\/\/doi.org\/10.1063\/1.4904463<\/a><br \/>[14]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#anthraquinonebasedintramolecularchargetransfercompoundscomputationalmoleculardesignthermallyactivateddelayedfluorescenceandhighlyefficientredelectroluminescence' class='gray_back'><strong>[306] Anthraquinone-Based Intramolecular-Charge-Transfer Compounds: Computational Molecular Design, Thermally Activated Delayed Fluorescence, and Highly-Efficient Red Electroluminescence<\/strong><br \/>Qisheng Zhang, Hirokazu Kuwabara, William J. Potscavage, Jr., Shuping Huang, Yasuhiro Hatae, Takumi Shibata, Chihaya Adachi<br \/>\n<i>J. Am. Chem. Soc.<\/i>, <strong>136<\/strong>, 18070 - 18081, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/ja510144h' target='_blank'>https:\/\/doi.org\/10.1021\/ja510144h<\/a><br \/>[753]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#improvedorganicthinfilmtransistorcharacteristicsusinganelevatedelectrodestructure' class='gray_back'><strong>[305] Improved organic thin-film transistor characteristics using an elevated-electrode structure<\/strong><br \/>Seung Kyum Kim, Chang-Hoon Shim, Tomohiko Edura, Chihaya Adachi, Reiji Hattori<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>53<\/strong>, 11, 111601, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.7567\/JJAP.53.111601' target='_blank'>https:\/\/doi.org\/10.7567\/JJAP.53.111601<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#originofexternalquantumefficiencydegradationinorganiclightemittingdiodeswithadcmagnetronsputteredcathode' class='gray_back'><strong>[304] Origin of external quantum efficiency degradation in organic light-emitting diodes with a DC magnetron sputtered cathode<\/strong><br \/>Hiroshi Fujimoto, Takuya Miyayama, Noriaki Sanada, Chihaya Adachi<br \/>\n<i>J. Vac. Sci. Technol. B<\/i>, <strong>32<\/strong>, 6, 60603, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1116\/1.4897920' target='_blank'>https:\/\/doi.org\/10.1116\/1.4897920<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#largereversesaturableabsorptionunderweakcontinuousincoherentlight' class='gray_back'><strong>[303] Large reverse saturable absorption under weak continuous incoherent light<\/strong><br \/>Shuzo Hirata, Kenro Totani, Takashi Yamashita, Chihaya Adachi, Martin Vacha<br \/>\n<i>Nature Materials<\/i>, <strong>13<\/strong>, 938 - 946, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/nmat4081' target='_blank'>https:\/\/doi.org\/10.1038\/nmat4081<\/a><br \/>[115]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#differentorientationofthetransitiondipolemomentsoftwosimilarptiicomplexesandtheirpotentialforhighefficiencyorganiclightemittingdiodes' class='gray_back'><strong>[302] Different orientation of the transition dipole moments of two similar Pt(II) complexes and their potential for high efficiency organic light-emitting diodes<\/strong><br \/>Christian Mayr, Masatsugu Taneda, Chihaya Adachi, Wolfgang Br\u00fctting<br \/>\n<i>Org. Elect<\/i>, <strong>15<\/strong>, 11,  3031 - 3037, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.orgel.2014.07.042' target='_blank'>https:\/\/doi.org\/10.1016\/j.orgel.2014.07.042<\/a><br \/>[31]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#analysisofelectrontrapsformedinorganicfilmswithasputteredcathode' class='gray_back'><strong>[301] Analysis of electron traps formed in organic films with a sputtered cathode<\/strong><br \/>Hiroshi Fujimoto, William J. Potscavage, Jr., Tomohiko Edura, Chihaya Adachi<br \/>\n<i>Org. Elect.<\/i>, <strong>15<\/strong>, 2783 - 2791, 2014<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.orgel.2014.08.021' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.orgel.2014.08.021<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#introductionoff4tcnqmoo3layersforthermoelectricdevicesbasedonpentacene' class='gray_back'><strong>[300] Introduction of F4-TCNQ\/MoO3 layers for thermoelectric devices based on pentacene<\/strong><br \/>Wu Shuang-hong, Ryosuke Nakamichi, Masatsugu Taneda, Zhang Qi-sheng, Chihaya Adachi<br \/>\n<i>Chinese Physics B<\/i>, <strong>23<\/strong>, 9, 98502, 2014<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1088\/1674-1056\/23\/9\/098502' target='_blank'>http:\/\/dx.doi.org\/10.1088\/1674-1056\/23\/9\/098502<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#exfoliationofgraphiteintographeneinpolarsolventsmediatedbyamphiphilichexaperihexabenzocoronene' class='gray_back'><strong>[299] Exfoliation of Graphite into Graphene in Polar Solvents Mediated by Amphiphilic Hexa-peri-hexabenzocoronene<\/strong><br \/>Ryota Kabe, Xinliang Feng, Chihaya Adachi, Klaus M\u00fcllen<br \/>\n<i>Chem-Asian J. <\/i>, <strong>9<\/strong>, 11, 3125 - 3129, 2014<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/asia.201402535' target='_blank'>http:\/\/dx.doi.org\/10.1002\/asia.201402535<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#dualintramolecularchargetransferfluorescencederivedfromaphenothiazinetriphenyltriazinederivative' class='gray_back'><strong>[298] Dual Intramolecular Charge-Transfer Fluorescence Derived from a Phenothiazine-Triphenyltriazine Derivative<\/strong><br \/>Hiroyuki Tanaka, Katsuyuki Shizu, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>118 <\/strong>, 29, 15985 - 15994, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/jp501017f' target='_blank'>https:\/\/doi.org\/10.1021\/jp501017f<\/a><br \/>[237]:Number of citation <br \/><a href=\"http:\/\/pubs.acs.org\/action\/showMostReadArticles?journalCode=jpccck&topArticlesType=month\">Most Read Articles<\/a> <font color=\"red\">8\u30019\u6708\u306eMost Read Articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br>\r\n<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivateddelayedfluorescencefrom3n%cf%80to1n%cf%80upconversionanditsapplicationtoorganiclightemittingdiodes' class='gray_back'><strong>[297] Thermally activated delayed fluorescence from 3n\u03c0* to 1n\u03c0* up-conversion and its application to organic light-emitting diodes<\/strong><br \/>Jie Li, Qisheng Zhang, Hiroko Nomura, Hiroshi Miyazaki, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>105<\/strong>, 1, 013301 , 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4887346' target='_blank'>https:\/\/doi.org\/10.1063\/1.4887346<\/a><br \/>[73]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#piextendednarrowbandgapdiketopyrrolopyrrolebasedoligomersforsolutionprocessedinvertedorganicsolarcells' class='gray_back'><strong>[296] \u03c0-Extended Narrow-Bandgap Diketopyrrolopyrrole-Based Oligomers for Solution-Processed Inverted Organic Solar Cells<\/strong><br \/>Woong Shin, Takuma Yasuda, Yu Hidaka, Go Watanabe, Ryota Arai, Keiro Nasu, Takahiro Yamaguchi, Wakako Murakami, Kengo Makita, Chihaya Adachi<br \/>\n<i>Advanced Energy Materials<\/i>, <strong>4<\/strong>, 17, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/aenm.201400879' target='_blank'>https:\/\/doi.org\/10.1002\/aenm.201400879<\/a><br \/>[52]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#structuralandmechanisticinsightsintoanfe3triggeredquinazolinebasedmolecularrotor' class='gray_back'><strong>[295] Structural and mechanistic insights into an Fe3+-triggered quinazoline based molecular rotor<\/strong><br \/>Rampal Pandey, G\u00e1bor M\u00e9hes, Amit Kumar, Rakesh Kumar Gupta, Chihaya Adachi, Daya Shankar Pandey<br \/>\n<i>Chem. Comm.<\/i>, <strong>50<\/strong>, 8032 - 8035, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C4CC01917B' target='_blank'>https:\/\/doi.org\/10.1039\/C4CC01917B<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#fabricationandcharacterizationoflargeareaflexiblemicrofluidicorganiclightemittingdiodewithliquidorganicsemiconductor' class='gray_back'><strong>[294] Fabrication and characterization of large-area flexible microfluidic organic light-emitting diode with liquid organic semiconductor<\/strong><br \/>Miho Tsuwaki, Takashi Kasahara, Tomohiko Edura, Shigeyuki Matsunami, Juro Oshima, Shuichi Shoji, Chihaya Adachi, Jun Mizuno<br \/>\n<i>Sens. Actuators A, Phys.<\/i>, <strong>216<\/strong>, 231 - 236, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.sna.2014.05.032' target='_blank'>https:\/\/doi.org\/10.1016\/j.sna.2014.05.032<\/a><br \/>[29]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencyorganiclightemittingdiodeswithfluorescentemitters' class='gray_back'><strong>[293] High-efficiency organic light-emitting diodes with fluorescent emitters<\/strong><br \/>Hajime Nakanotani, Takahiro Higuchi, Taro Furukawa, Kensuke Masui, Kei Morimoto, Masaki Numata, Hiroyuki Tanaka, Yuta Sagara, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>Nature Communications<\/i>, <strong>5<\/strong>, 5016, 2014<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1038\/ncomms5016' target='_blank'>http:\/\/dx.doi.org\/10.1038\/ncomms5016<\/a><br \/>[783]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#temperaturedependenceofphotoluminescencepropertiesinathermallyactivateddelayedfluorescenceemitter' class='gray_back'><strong>[292] Temperature dependence of photoluminescence properties in a thermally activated delayed fluorescence emitter<\/strong><br \/>Akitsugu Niwa, Takashi Kobayashi, Takashi Nagase, Kenichi Goushi, Chihaya Adachi, Hiroyoshi Naito<br \/>\n<i>Applied Physics Letters<\/i>, <strong>104<\/strong>, 213303, 2014<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4878397' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4878397<\/a><br \/>[42]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#selectivelycontrolledorientationalorderinlinearshapedthermallyactivateddelayedfluorescentdopants' class='gray_back'><strong>[291] Selectively Controlled Orientational Order in Linear-Shaped Thermally Activated Delayed Fluorescent Dopants<\/strong><br \/>Takeshi Komino, Hiroyuki Tanaka, Chihaya Adachi<br \/>\n<i>Chem. Mater.<\/i>, <strong>26<\/strong>, 12, 3665 - 3671, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/cm500802p' target='_blank'>https:\/\/doi.org\/10.1021\/cm500802p<\/a><br \/>[95]:Number of citation <br \/><a href=\"http:\/\/pubs.acs.org\/editorschoice\/\">ACS Editor's Choice<\/a> <font color=\"red\">ACS Editors' Choice\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br>\r\n<a href=\"http:\/\/pubs.acs.org\/action\/showMostReadArticles?journalCode=cmatex\">Most Read Articles<\/a> <font color=\"red\">6\u6708\u306eMost Read Articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#influenceofhostmatrixonthermallyactivateddelayedfluorescenceeffectsonemissionlifetimephotoluminescencequantumyieldanddeviceperformance' class='gray_back'><strong>[290] Influence of Host Matrix on Thermally-Activated Delayed Fluorescence: Effects on Emission Lifetime, Photoluminescence Quantum Yield, and Device Performance<\/strong><br \/>G\u00e1bor M\u00e9hes, Kenichi Goushi, William J. Potscavage, Jr., Chihaya Adachi<br \/>\n<i>Org. Elect.<\/i>, <strong>15<\/strong>, 9, 2027 - 2037, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.orgel.2014.05.027' target='_blank'>https:\/\/doi.org\/10.1016\/j.orgel.2014.05.027<\/a><br \/>[143]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electrogeneratedchemiluminescenceofdonor%e2%80%93acceptormolecules' class='gray_back'><strong>[289] Electrogenerated Chemiluminescence of Donor\u2013Acceptor Molecules with Thermally Activated Delayed Fluorescence<\/strong><br \/>Ryoichi Ishimatsu, Shigeyuki Matsunami, Takashi Kasahara, Jun Mizuno, Tomohiko Edura, Chihaya Adachi, Koji Nakano, Toshihiko Imato<br \/>\n<i>Angew. Chem. Int. Ed.<\/i>, <strong>53<\/strong>, 27, 6993 - 6996, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.201402615' target='_blank'>https:\/\/doi.org\/10.1002\/anie.201402615<\/a><br \/>[124]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencywhiteorganiclightemittingdiodesusingthermally' class='gray_back'><strong>[288] High-efficiency white organic light-emitting diodes using thermally activated delayed fluorescence<\/strong><br \/>Jun-ichi Nishide, Hajime Nakanotani, Yasuhide Hiraga, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>104<\/strong>, 233304, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4882456' target='_blank'>https:\/\/doi.org\/10.1063\/1.4882456<\/a><br \/>[109]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#analysisofalternativecurrentdrivenelectroluminescenceinorganiclightemittingdiodesacomparativestudy' class='gray_back'><strong>[287] Analysis of alternative current driven electroluminescence in  organic light emitting diodes: a comparative study<\/strong><br \/>Le Zhang, Hajime Nakanotani, Kou Yoshida, Chihaya Adachi<br \/>\n<i>Org. Elect.<\/i>, <strong>15<\/strong>, 1815 - 1821, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.orgel.2014.05.009' target='_blank'>https:\/\/doi.org\/10.1016\/j.orgel.2014.05.009<\/a><br \/>[18]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficiencyenhancementoforganiclightemittingdiodesincorporatingahighlyoriented' class='gray_back'><strong>[286] Efficiency enhancement of organic light-emitting diodes incorporating a highly oriented thermally activated delayed fluorescence emitter<\/strong><br \/>Christian Mayr, Sae Youn Lee, Tobias D. Schmidt, Takeshi Komino, Takuma, Yasuda, Chihaya Adachi, Wolfgang Br\u00fctting<br \/>\n<i>Adv. Fanct. Mater.<\/i>, <strong>24<\/strong>, 33, 5232 - 5239, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.201400495' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.201400495<\/a><br \/>[152]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#multicolormicrofluidicelectrochemiluminescencecells' class='gray_back'><strong>[285] Multi-color microfluidic electrochemiluminescence cells<\/strong><br \/>Takashi Kasahara, Shigeyuki MAtsunami, Tomohiko Edura, Ryoichi Ishimatsu, Juro Oshima, Miho Tsuwaki, Toshihiko Imato, Shuichi Shoji, Chihaya Adachi, Jun Mizuno<br \/>\n<i>Sens. Actuators A, Phys.<\/i>, <strong>214<\/strong>, 225 - 229, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.sna.2014.04.039' target='_blank'>https:\/\/doi.org\/10.1016\/j.sna.2014.04.039<\/a><br \/>[33]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#fabricationofhighefficiencymultilayeredorganiclightemittingdiodesbyafilmtransfermethod' class='gray_back'><strong>[284] Fabrication of high-efficiency multilayered organic light-emitting diodes by a film transfer method<\/strong><br \/>Kenji Kawano, Kaori Nagayoshi, Takeyuki Yamaki, Chihaya Adachi<br \/>\n<i>Org. Electron. <\/i>, <strong>15<\/strong>, 7, 1695 - 1701, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.orgel.2014.04.035' target='_blank'>https:\/\/doi.org\/10.1016\/j.orgel.2014.04.035<\/a><br \/>[16]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#donoracceptorstructured14diazatriphenylenederivativesexhibitingthermallyactivateddelayedfluorescencedesignandsynthesisphotophysicalpropertiesandoledcharacteristics' class='gray_back'><strong>[283] Donor-acceptor-structured 1,4-diazatriphenylene derivatives exhibiting thermally activated delayed fluorescence: design and synthesis, photophysical properties and OLED characteristics<\/strong><br \/>Takehiro Takahashi, Katsuyuki Shizu, Takuma Yasuda, Kazunori Togashi, Chihaya Adachi<br \/>\n<i>Sci. Technol. Adv. Mater.<\/i>, <strong>15<\/strong>, 3,  034202, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1088\/1468-6996\/15\/3\/034202' target='_blank'>https:\/\/doi.org\/10.1088\/1468-6996\/15\/3\/034202<\/a><br \/>[62]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#accuratemeasurementofdopantconcentrationinorganiclightemittingdiodesbycombininghighperformanceliquidchromatographyandtofsims' class='gray_back'><strong>[282] Accurate measurement of dopant concentration in organic light-emitting diodes by combining high-performance liquid chromatography and TOF-SIMS<\/strong><br \/>Hiroshi Fujimoto, Tomohiko Edura, Takuya Miyayama, Noriaki Sanada, Chihaya Adachi<br \/>\n<i>J. Vac. Sci. Technol. B<\/i>, <strong>32<\/strong>, 3, 030604-1 - 030604-5, 2014<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1116\/1.4871756' target='_blank'>http:\/\/dx.doi.org\/10.1116\/1.4871756<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivateddelayedfluorescencefromaspirodiazafluorenederivative' class='gray_back'><strong>[281] Thermally Activated Delayed Fluorescence From a Spiro-Diazafluorene Derivative<\/strong><br \/>Hiroshi Ohkuma, Tetsuya Nakagawa, Katsuyuki Shizu, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>43<\/strong>, 7, 1017 - 1019 , 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.140360' target='_blank'>https:\/\/doi.org\/10.1246\/cl.140360<\/a><br \/>[61]:Number of citation <br \/><a href=\"https:\/\/www.jstage.jst.go.jp\/browse\/cl\/43\/7\/_contents\"><font color=\"red\">Chemistry Letters Editors' Choice\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/a><\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientexciplexorganiclightemittingdiodesincorporatingaheptazinederivativeasanelectronacceptor' class='gray_back'><strong>[280] Highly efficient exciplex organic light-emitting diodes incorporating a heptazine derivative as an electron acceptor<\/strong><br \/>Jie Li, Hiroko Nomura, Hiroshi Miyazaki, Chihaya Adachi<br \/>\n<i>Chem. Comm.<\/i>, <strong>50<\/strong>, 6174 - 6176, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C4CC01590H' target='_blank'>https:\/\/doi.org\/10.1039\/C4CC01590H<\/a><br \/>[134]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#adesignedfluorescentanthracenederivativetheorycalculationsynthesisandcharacterization' class='gray_back'><strong>[279] A Designed Fluorescent Anthracene Derivative:Theory, Calculation, Synthesis, and Characterization<\/strong><br \/>Motoyuki Uejima, Tohru Sato, Masahiro  Detani, Atsushi Wakamiya, Furitsu Suzuki, Hajime Suzuki, Tatsuya Fukushima, Kazuyoshi Tanaka, Yasujiro Murata, Chihaya Adachi, Hironori Kaji<br \/>\n<i>Chem. Phys. Lett.<\/i>, <strong>602<\/strong>, 80 - 83, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.cplett.2014.04.017' target='_blank'>https:\/\/doi.org\/10.1016\/j.cplett.2014.04.017<\/a><br \/>[18]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lightemittingorganicfieldeffecttransistorsbasedonhighlyluminescentsinglecrystalsofthiophenephenylenecooligomers' class='gray_back'><strong>[278] Light-emitting organic field-effect transistors based on highly luminescent single crystals of thiophene\/phenylene co-oligomers<\/strong><br \/>Takahiro Komori, Hajime Nakanotani, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>J. Mater. Chem. C,<\/i>, <strong>2<\/strong>, 25, 4918 - 4921, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C4TC00164H' target='_blank'>https:\/\/doi.org\/10.1039\/C4TC00164H<\/a><br \/>[64]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#luminousbutterfliesefficientexcitonharvestingbybenzophenonederivativesforfullcolordelayedfluorescenceoleds' class='gray_back'><strong>[277] Luminous Butterflies: Efficient Exciton Harvesting by Benzophenone Derivatives for Full-Color Delayed Fluorescence OLEDs<\/strong><br \/>Sae Youn Lee, Takuma Yasuda, Yu Seok Yang, Qisheng Zhang, Chihaya Adachi<br \/>\n<i>Angew. Chem. Int. Ed.<\/i>, <strong>126<\/strong>, 25, 6520 - 6524, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/ange.201402992' target='_blank'>https:\/\/doi.org\/10.1002\/ange.201402992<\/a><br \/>[528]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thirdgenerationorganicelectroluminescencematerials' class='gray_back'><strong>[276] Third-generation organic electroluminescence materials<\/strong><br \/>Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>53<\/strong>, 6, 60101, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.7567\/JJAP.53.060101' target='_blank'>https:\/\/doi.org\/10.7567\/JJAP.53.060101<\/a><br \/>[412]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#flexibleporousbismuthtelluridethinfilmswithenhancedfigureofmeritusingmicrophaseseparationofblockcopolymer' class='gray_back'><strong>[275] Flexible Porous Bismuth Telluride Thin Films with Enhanced Figure of Merit using Micro-Phase Separation of Block Copolymer<\/strong><br \/>Kunihisa Kato, Yoshika Hatasako, Michitaka Uchino, Yasukazu Nakata, Yoshinori Suzuki, Teruaki Hayakawa, Chihaya Adachi, Koji Miyazaki<br \/>\n<i>Adv. Mater. Interfaces<\/i>, <strong>1<\/strong>, 2, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/admi.201300015' target='_blank'>https:\/\/doi.org\/10.1002\/admi.201300015<\/a><br \/>[33]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancedoutcouplingefficiencyoforganiclightemittingdiodesusingan' class='gray_back'><strong>[274] Enhanced Out-coupling Efficiency of Organic Light-emitting Diodes using an Nanostructure Imprinted by an Alumina Nanohole Array<\/strong><br \/>Kuniaki Endo, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>104<\/strong>, 121102, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4869468' target='_blank'>https:\/\/doi.org\/10.1063\/1.4869468<\/a><br \/>[13]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientblueorganiclightemittingdiodesemployingthermallyactivateddelayedfluorescence' class='gray_back'><strong>[273] Efficient blue organic light-emitting diodes employing thermally activated delayed fluorescence<\/strong><br \/>Qisheng Zhang, Bo Li, Shuping Huang, Hiroko Nomura, Hiroyuki Tanaka, Chihaya Adachi<br \/>\n<i>Nature Photonics<\/i>, <strong>8<\/strong>, 326 - 332, 2014<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1038\/nphoton.2014.12 ' target='_blank'>http:\/\/dx.doi.org\/10.1038\/nphoton.2014.12 <\/a><br \/>[1911]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#comparisonofsmallamountsofpolycrystallinedonormaterialsinc70basedbulkheterojunctionphotovoltaicsandoptimizationofdinaphthothienothiophenebasedphotovoltaic2' class='gray_back'><strong>[273] Comparison of small amounts of polycrystalline donor materials in C70-based bulk heterojunction photovoltaics and optimization of dinaphthothienothiophene based photovoltaic<\/strong><br \/>Yan-qiong Zheng, William J. Potscavage, Jr., Qi-sheng Zhang, Takeshi Komino, Masatsugu Taneda, Chihaya Adachi<br \/>\n<i>Org. Electron. <\/i>, <strong>15<\/strong>, 4, 878 - 885, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.orgel.2014.01.012' target='_blank'>https:\/\/doi.org\/10.1016\/j.orgel.2014.01.012<\/a><br \/>[24]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#selfassemblyphysicochemicalandfieldeffecttransistorpropertiesofsolutioncrystallizedorganicsemiconductorsbasedonpiextendeddithieno32b23dthiophenes' class='gray_back'><strong>[271] Self-assembly, Physicochemical, and Field-effect Transistor Properties of Solution-crystallized Organic Semiconductors Based on pi-Extended Dithieno[3,2-b:2',3'-d]thiophenes<\/strong><br \/>Hiroyuki Mieno, Takuma Yasuda, Yu Seok Yang, Chihaya Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>43<\/strong>, 293 - 295, 2014<br \/>DOI: <a href=' https:\/\/doi.org\/10.1246\/cl.130914' target='_blank'> https:\/\/doi.org\/10.1246\/cl.130914<\/a><br \/>[9]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#dicarbazolyldicyanobenzenesasthermallyactivateddelayedfluorescenceemitterseffectofsubstitutionpositiononphotoluminescentandelectroluminescentproperties2' class='gray_back'><strong>[270] Dicarbazolyldicyanobenzenes as Thermally Activated Delayed Fluorescence Emitters: Effect of Substitution Position on Photoluminescent and Electroluminescent Properties<\/strong><br \/>Bo Li, Hiroko Nomura, Hiroshi Miyazaki, Qisheng Zhang, Kou Yoshida, Yoshinori Suzuna, Akihiko Orita, Junzo Otera, Chihaya Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>3<\/strong>, 319 - 321, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.130907' target='_blank'>https:\/\/doi.org\/10.1246\/cl.130907<\/a><br \/>[52]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencydeepblueorganiclightemittingdiodesbasedonathermallyactivateddelayedfluorescenceemitter2' class='gray_back'><strong>[269] High-efficiency deep-blue organic light-emitting diodes based on a thermally activated delayed fluorescence emitter<\/strong><br \/>Shuanghong Wu, Masaki Aonuma, Qisheng Zhang, Shuping Huang, Tetsuya Nakagawa, Kazuhiro Kuwabara, Chihaya Adachi<br \/>\n<i>J. Mater. Chem. C<\/i>, <strong>2<\/strong>, 3, 421 - 424, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C3TC31936A' target='_blank'>https:\/\/doi.org\/10.1039\/C3TC31936A<\/a><br \/>[245]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#polymorphismin99diarylfluorenebasedorganicsemiconductorsinfluenceonoptoelectronicfunctions' class='gray_back'><strong>[268] Polymorphism in 9,9-diarylfluorene-based organic semiconductors: influence on optoelectronic functions<\/strong><br \/>Jun Yun Kim, Takuma Yasuda, Yu Seok Yang, Naoki Matsumto, Chihaya Adachi<br \/>\n<i>Chem. Commun.<\/i>, <strong>50<\/strong>, 1523 - 1526, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C3CC48566H' target='_blank'>https:\/\/doi.org\/10.1039\/C3CC48566H<\/a><br \/>[24]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#asixcarbazoledecoratedcyclophosphazeneasahostwithhightripletenergytorealizeefficientdelayedfluorescenceoleds' class='gray_back'><strong>[267] A Six-carbazole-decorated Cyclophosphazene as a Host with High Triplet Energy to Realize Efficient Delayed-fluorescence OLEDs<\/strong><br \/>Takuro Nishimoto, Takuma Yasuda, Sae Youn Lee, Ryosuke Kondo, Chihaya Adachi<br \/>\n<i>Mater. Horizons<\/i>, <strong>1<\/strong>, 2, 264 - 269, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C3MH00079F' target='_blank'>https:\/\/doi.org\/10.1039\/C3MH00079F<\/a><br \/>[137]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#100%c2%b5morderpatterningoforganicsemiconductorlayersusingathermallyconvertedprecursortechniqueanditsapplicationtoorganiclightemittingdiodes' class='gray_back'><strong>[266] OLEDs: 100 \u03bcm-Order Patterning of Organic Semiconductor Layers Using a Thermally Converted Precursor Technique and its Application to Organic Light Emitting Diodes<\/strong><br \/>Daisuke Goto, Masataka Mohri, Kei Morimoto, Aleksandre Mzhavia, Chihaya Adachi<br \/>\n<i>Advanced Optical Materials<\/i>, <strong>2<\/strong>, 110 - 114, 2014<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.201470008' target='_blank'>https:\/\/doi.org\/10.1002\/adom.201470008<\/a><br \/><font color=\"red\">Front Cover\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2014\/02\/Cover-Picture.pdf\">Advanced Optical Materials<\/a><font color=\"red\">--February 2014<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2013'>2013<\/h4><div rel='#fabricationofaflexiblebismuthtelluridepowergeneration' class='gray_back'><strong>[265] Fabrication of a Flexible Bismuth Telluride Power Generation Module Using Microporous Polyimide Films as Substrates<\/strong><br \/>Kunihisa Kato, Yoshika Hatasako, Makoto Kashiwagi, Harutoshi Hagino, Chihaya Adachi, Koji Miyazaki<br \/>\n<i>J. Electron. Mater.<\/i>, <strong>43<\/strong>, 1733 - 1739, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1007\/s11664-013-2852-0' target='_blank'>https:\/\/doi.org\/10.1007\/s11664-013-2852-0<\/a><br \/>[30]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#systematicconversionofsinglewalledcarbonnanotubesintontypethermoelectricmaterialsbymoleculardopants' class='gray_back'><strong>[264] Systematic Conversion of Single Walled Carbon Nanotubes into n-type Thermoelectric Materials by Molecular Dopants<\/strong><br \/>Yoshiyuki Nonoguchi, Kenji Ohashi, Rui Kanazawa, Koji Ashiba, Kenji Hata, Tetsuya Nakagawa, Chihaya Adachi, Tomoaki Tanase, Tsuyoshi Kawai<br \/>\n<i>Sci. Rep.<\/i>, <strong>3<\/strong>, 3344, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/srep03344' target='_blank'>https:\/\/doi.org\/10.1038\/srep03344<\/a><br \/>[302]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#anorganicthinfilmphotodiodeasaportablephotodetectorforthedetectionofalkylphenolpolyethoxylatesbyaflowfluorescenceimmunoassayonmagneticmicrobeadsinamicrochannel' class='gray_back'><strong>[263] An organic thin film photodiode as a portable photodetector for the detection of alkylphenol polyethoxylates by a flow fluorescence-immunoassay on magnetic microbeads in a microchannel<\/strong><br \/>Ryoichi Ishimatsu, Azusa Naruse, Rong Liu, Koji Nakano, Masayuki Yahiro, Chihaya Adachi, Toshihiko Imato<br \/>\n<i>Talanta<\/i>, <strong>117<\/strong>, 139 - 145, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.talanta.2013.08.044' target='_blank'>https:\/\/doi.org\/10.1016\/j.talanta.2013.08.044<\/a><br \/>[18]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#ahighlyluminescentspiroanthracenonebasedorganiclightemittingdiodethroughthermallyactivateddelayedfluorescence' class='gray_back'><strong>[262] A highly luminescent spiro-anthracenone-based organic light-emitting diode through thermally activated delayed fluorescence<\/strong><br \/>Keiro Nasu, Tetsuya Nakagawa, Hiroko Nomura, Chi-Jen Lin, Chien-Hong Cheng, Mei-Rurng Tseng, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>Chem. Comm.<\/i>, <strong>49<\/strong>, 10385 - 10387, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C3CC44179B' target='_blank'>https:\/\/doi.org\/10.1039\/C3CC44179B<\/a><br \/>[181]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#twistedintramolecularchargetransferstateforlongwavelengththermallyactivateddelayedfluorescence' class='gray_back'><strong>[261] Twisted Intramolecular Charge Transfer State for Long-Wavelength Thermally Activated Delayed Fluorescence<\/strong><br \/>Hiroyuki Tanaka, Katsuyuki Shizu, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Chem. Mater.<\/i>, <strong>25<\/strong>, 3766 - 3771, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/cm402428a' target='_blank'>https:\/\/doi.org\/10.1021\/cm402428a<\/a><br \/>[273]:Number of citation <br \/><font color=\"red\">9\u6708\u306eMost read articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/pubs.acs.org\/action\/showMostReadArticles?journalCode=cmatex&topArticlesType=month\">Chemistry of Materials<\/a><font color=\"red\">--September 2013<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#mixingeffectofgoldandsilvernanoparticlesonenhancementinperformanceoforganicthinfilmsolarcells' class='gray_back'><strong>[260] Mixing Effect of Gold and Silver Nanoparticles on Enhancement in Performance of Organic Thin Film Solar Cells<\/strong><br \/>Tsuyoshi Akiyama, Tomoki Yamamoto, Takeo Oku, Masayuki Yahiro, Takashi Kunihara, Chihaya Adachi, Sunao Yamada<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>52<\/strong>, 122301, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.7567\/JJAP.52.122301' target='_blank'>https:\/\/doi.org\/10.7567\/JJAP.52.122301<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#formationofhighpurityorganicthinfilmsbygasflowdepositionandtheeffectofimpuritiesondevicecharacteristics' class='gray_back'><strong>[259] Formation of high-purity organic thin films by gas flow deposition and the effect of impurities on device characteristics<\/strong><br \/>Kohei Tsugita, Tomohiko Edura, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Displays<\/i>, <strong>34<\/strong>, 5, 418 - 422, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.displa.2013.08.008' target='_blank'>https:\/\/doi.org\/10.1016\/j.displa.2013.08.008<\/a><br \/>[8]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#plasmatolerantstructurefororganiclightemittingdiodeswithaluminumcathodesfabricatedbydcmagnetronsputteringusingalidopedelectrontransportlayer3' class='gray_back'><strong>[258] Plasma-tolerant structure for organic light-emitting diodes with aluminum cathodes fabricated by DC magnetron sputtering: Using a Li-doped electron transport layer<\/strong><br \/>Hiroshi Fujimoto, Takuya Miyayama, Noriaki Sanada, Chihaya Adachi<br \/>\n<i>Org. Electron.<\/i>, <strong>14<\/strong>, 11, 2994 - 2999, 2013<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.orgel.2013.08.020' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.orgel.2013.08.020<\/a><br \/>[17]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#capacitancevoltagecharacteristicsofa44bisncarbazolestyrylbiphenylbasedorganiclightemittingdiodeimplicationsforcharacteristictimesandtheirdistribution' class='gray_back'><strong>[257] Capacitance-voltage characteristics of a 4,4'-bis[(N-carbazole)styryl]biphenyl based organic light-emitting diode: implications for characteristic times and their distribution<\/strong><br \/>Le Zhang, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>103<\/strong>, 93301, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4819436' target='_blank'>https:\/\/doi.org\/10.1063\/1.4819436<\/a><br \/>[46]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#multilayeredorganiclightemittingdiodefabricationusinglowmolecularweightmaterialsbyelectrospraymethod' class='gray_back'><strong>[256] Multi-layered organic light-emitting diode fabrication  using low molecular weight materials by electrospray method<\/strong><br \/>Yasushi Koishikawa, Hiroshi Miyazaki, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Thin Solid Films<\/i>, <strong>545<\/strong>, 527 - 532, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.tsf.2013.07.083' target='_blank'>https:\/\/doi.org\/10.1016\/j.tsf.2013.07.083<\/a><br \/>[20]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#computationalpredictionforsingletandtriplettransitionenergiesofchargetransfercompounds' class='gray_back'><strong>[255] Computational Prediction for Singlet- and Triplet-Transition Energies of Charge-Transfer Compounds<\/strong><br \/>Shuping Huang, Qisheng Zhang, Yoshihito Shiota, Tetsuya Nakagawa, Kazuhiro Kuwabara, Kazunari Yoshizawa, Chihaya Adachi<br \/>\n<i>J. CHEM. THEORY. COMPUT.<\/i>, <strong>9<\/strong>, 3872 - 3877, 2013<br \/>DOI: <a href='http:\/\/pubs.acs.org\/doi\/abs\/10.1021\/ct400415r' target='_blank'>http:\/\/pubs.acs.org\/doi\/abs\/10.1021\/ct400415r<\/a><br \/>[292]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#multicolorlightemittingtransistorscomposedoforganicsinglecrystals' class='gray_back'><strong>[254] Multi-color light-emitting transistors composed of organic single crystals<\/strong><br \/>Yohei Yomogida, Hayato Sakai, Kosuke Sawabe, Shota Gocho, Satria Zulkarnaen Bisri, Hajime Nakanotani, Chihaya Adachi, Taku Hasobe, Yoshihiro Iwasa, Taishi Takenobu<br \/>\n<i>Org. Elect.<\/i>, <strong>14<\/strong>, 2737 - 2742, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/ct400415r' target='_blank'>https:\/\/doi.org\/10.1021\/ct400415r<\/a><br \/>[22]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#suppressionofefficiencyrolloffcharacteristicsinthermallyactivateddelayedfluorescencebasedorganiclightemittingdiodesusingrandomlyorientedhostmolecules' class='gray_back'><strong>[253] Suppression of Efficiency Roll-Off Characteristics in Thermally Activated Delayed Fluorescence Based Organic Light-Emitting Diodes using Randomly Oriented Host Molecules<\/strong><br \/>Takeshi Komino, Hiroko Nomura, Takahiro Koyanagi, Chihaya Adachi<br \/>\n<i>Chemistry of Materials<\/i>, <strong>25<\/strong>, 3038 - 3047, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/cm4011597' target='_blank'>https:\/\/doi.org\/10.1021\/cm4011597<\/a><br \/>[75]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#analysisofexcitonannihilationinhigheffciencyskyblueorganiclightemittingdiodeswiththermallyactivateddelayedfluorescence' class='gray_back'><strong>[252] Analysis of exciton annihilation in high-effciency sky-blue organic light-emitting diodes with thermally activated delayed fluorescence<\/strong><br \/>Kensuke Masui, Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Org. Elect.<\/i>, <strong>14<\/strong>, 2721 - 2726, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.orgel.2013.07.010' target='_blank'>https:\/\/doi.org\/10.1016\/j.orgel.2013.07.010<\/a><br \/>[416]:Number of citation <br \/><font color=\"red\">\u904e\u53bb3\u304b\u6708\u9593\u306eMost downloaded articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/www.journals.elsevier.com\/organic-electronics\/most-downloaded-articles\/\">Organic Electronics<\/a><font color=\"red\">--November 2013<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancedelectroluminescencebasedonthermallyactivateddelayedfluorescencefromacarbazoletriazinederivative' class='gray_back'><strong>[251] Enhanced electroluminescence based on thermally activated delayed fluorescence from a carbazole-triazine derivative<\/strong><br \/>Tomas Serevi\u010dius, Tetsuya Nakagawa, Ming-Cheng Kuo, Shuo-Hsien Cheng, Ken-Tsung Wong, Chih-Hao Chang, Raymond C. Kwong, Sean Xia, Chihaya Adachi<br \/>\n<i>Phys. Chem. Chem. Phys.<\/i>, <strong>15<\/strong>, 15850 - 15855, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C3CP52255E' target='_blank'>https:\/\/doi.org\/10.1039\/C3CP52255E<\/a><br \/>[109]:Number of citation <br \/><font color=\"red\">Back Cover\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2013\/10\/c3cp90124f.pdf\">Phys. Chem. Chem. Phys.<\/a><font color=\"red\">--August 2013<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#dropletmanipulationbyanexternalelectricfieldforcrystallinefilmgrowth' class='gray_back'><strong>[250] Droplet Manipulation by an External Electric Field for Crystalline Film Growth<\/strong><br \/>Takeshi Komino, Kazuhiro Kuwabara, Masaaki Ikeda, Masayuki Yahiro, Chihaya Adachi, Kazuo Takimiya<br \/>\n<i>Langmuir<\/i>, <strong>29<\/strong>, 9592 - 9597, 2013<br \/>DOI: <a href=' https:\/\/doi.org\/10.1021\/la401729k' target='_blank'> https:\/\/doi.org\/10.1021\/la401729k<\/a><br \/>[16]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#promisingoperationalstabilityofhighefficiencyorganiclightemittingdiodesbasedonthermallyactivateddelayedfluorescence' class='gray_back'><strong>[249] Promising operational stability of high-efficiency organic light-emitting diodes based on thermally activated delayed fluorescence<\/strong><br \/>Hajime Nakanotani, Kensuke Masui, Junichi Nishide, Takumi Shibata, Chihaya Adachi<br \/>\n<i>Sci. Rep.<\/i>, <strong>3<\/strong>, 2127, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/srep02127' target='_blank'>https:\/\/doi.org\/10.1038\/srep02127<\/a><br \/>[269]:Number of citation <br \/><font color=\"red\">\u6ce8\u76ee\u306e\u8ad6\u6587\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/www.natureasia.com\/ja-jp\/srep\/abstracts\/46713\">Scientific Reports<\/a><font color=\"red\">--July 2013<\/font><br\/>\r\nScientific Reports Errata<a href=\"http:\/\/www.nature.com\/srep\/2014\/140113\/srep03640\/metrics\">\u3053\u3061\u3089<\/a><font color=\"red\"><\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#solventeffectonthermallyactivateddelayedfluorescenceby1235tetrakiscarbazol9yl46dicyanobenzene' class='gray_back'><strong>[248] Solvent Effect on Thermally Activated Delayed Fluorescence by 1,2,3,5-Tetrakis(carbazol-9-yl)-4,6-dicyanobenzene<\/strong><br \/>Ryoichi Ishimatsu, Shigeyuki Matsunami, Katsuyuki Shizu, Chihaya Adachi, Koji Nakano, Toshihiko Imato<br \/>\n<i>Journal of Physical Chemistry A<\/i>, <strong>117<\/strong>, 5607 - 5612, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/jp404120s' target='_blank'>https:\/\/doi.org\/10.1021\/jp404120s<\/a><br \/>[153]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highperformanceorganicfieldeffecttransistorsbasedonsinglecrystalmicroribbonsandmicrosheetsofsolutionprocesseddithieno32b23dthiophenederivatives' class='gray_back'><strong>[247] High performance organic field-effect transistors based on single-crystal microribbons and microsheets of solution-processed dithieno[3,2-b:2',3'-d]thiophene derivatives<\/strong><br \/>Yu Seok Yang, Takuma Yasuda, Hayato Kakizoe, Hiroyuki Mieno, Hiori Kino, Yoshitaka Tateyama, Chihaya Adachi<br \/>\n<i>Chem. Commun.<\/i>, <strong>49<\/strong>, 6483 - 6485, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C3CC42114G' target='_blank'>https:\/\/doi.org\/10.1039\/C3CC42114G<\/a><br \/>[59]:Number of citation <br \/><font color=\"red\">Inside back cover\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#selforganizingmesomorphicdiketopyrrolopyrrolederivativesforefficientsolutionprocessedorganicsolarcells' class='gray_back'><strong>[246] Self-Organizing Mesomorphic Diketopyrrolopyrrole Derivatives for Efficient Solution-Processed Organic Solar Cells<\/strong><br \/>Woong Shin, Takuma Yasuda, Go Watanabe, Yu Seok Yang, Chihaya Adachi<br \/>\n<i>Chem. Mater.<\/i>, <strong>25<\/strong>, 2549 - 2556, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/cm401244x' target='_blank'>https:\/\/doi.org\/10.1021\/cm401244x<\/a><br \/>[125]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#oxadiazoleandtriazolebasedhighlyefficientthermallyactivateddelayedfluorescenceemittersfororganiclightemittingdiodes' class='gray_back'><strong>[245] Oxadiazole- and triazole-based highly-efficient thermally activated delayed fluorescence emitters for organic light-emitting diodes<\/strong><br \/>Jiyoung Lee, Katsuyuki Shizu, Hiroyuki Tanaka, Hiroko Nomura, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>J. Mater. Chem. C<\/i>, <strong>1<\/strong>, 4599 - 4604, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C3TC30699B' target='_blank'>https:\/\/doi.org\/10.1039\/C3TC30699B<\/a><br \/>[305]:Number of citation <br \/><font color=\"red\">Top 10 most-read article\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/blogs.rsc.org\/jm\/2013\/10\/21\/top-10-most-read-journal-of-materials-chemistry-c-articles-%e2%80%93-q2-2013\/\">Journal of Materials Chemistry C<\/a><font color=\"red\">--October 2013<\/font><br\/>\r\n<font color=\"red\">2013\u5e74\u306e\r\nMost Accessed Manuscripts for Journal of Materials Chemistry C\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/pubs.rsc.org\/en\/journals\/articlecollectionlanding?sercode=tc&themeid=59adffea-1d41-42eb-ada5-08ed90ff84ed\">Journal of Materials Chemistry C<\/a><font color=\"red\">--2013Most Accessed Manuscripts for Journal of Materials Chemistry C<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organicluminescentmoleculewithenergeticallyequivalentsingletandtripletexcitedstatesfororganiclightemittingdiodes' class='gray_back'><strong>[244] Organic luminescent molecule with energetically equivalent singlet and triplet excited states for organic light-emitting diodes<\/strong><br \/>Keigo Sato, Katsuyuki Shizu, Kazuaki Yoshimura, Atsushi Kawada, Hiroshi Miyazaki, Chihaya Adachi<br \/>\n<i>Phys. Rev. Lett.<\/i>, <strong>110<\/strong>, 247401, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1103\/PhysRevLett.110.247401' target='_blank'>https:\/\/doi.org\/10.1103\/PhysRevLett.110.247401<\/a><br \/>[180]:Number of citation <br \/><font color=\"red\">Focus Article\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/physics.aps.org\/articles\/v6\/66\">American Physical Society<\/a><font color=\"red\">--June 2013<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photopatternableelectroluminescencebasedononewayphotoisomerizationreactionoftetraoxidizedtriangleterarylenes' class='gray_back'><strong>[243] Photo-patternable electroluminescence based on one-way photoisomerization reaction of tetraoxidized triangle terarylenes<\/strong><br \/>Maki Taguchi, Tetsuya Nakagawa, Takuya Nakashima, Chihaya Adachi, Tsuyoshi Kawai<br \/>\n<i>Chem. Comm.<\/i>, <strong>49<\/strong>, 6373 - 6375, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C3CC41825A' target='_blank'>https:\/\/doi.org\/10.1039\/C3CC41825A<\/a><br \/>[17]:Number of citation <br \/><font color=\"red\">Inside-Front\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#reducedamplifiedspontaneousemissionthresholdinorganicsemiconductorlaserstructurewithrelaxedrolloffcharacteristicsunderhighcurrentdensities2' class='gray_back'><strong>[242] Reduced amplified spontaneous emission threshold in organic semiconductor laser structure with relaxed roll-off characteristics under high current densities<\/strong><br \/>Munetomo Inoue, Kenichi Goushi, Kuniaki Endo, Hiroko Nomura, Chihaya Adachi<br \/>\n<i>Journal of Luminescence<\/i>, <strong>143<\/strong>, 754 - 758, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.jlumin.2013.04.001' target='_blank'>https:\/\/doi.org\/10.1016\/j.jlumin.2013.04.001<\/a><br \/>[13]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientbulkheterojunctionphotovoltaiccellbasedontris45phenylthiophen2ylphenylamineandc70combinedwithoptimizedelectrontransportlayer3' class='gray_back'><strong>[241] Highly efficient bulk heterojunction photovoltaic cell based on tris[4-(5-phenylthiophen-2-yl)phenyl]amine and C70 combined with optimized electron transport layer<\/strong><br \/>Yan-qiong Zheng, William J Potscavage, Takeshi Komino, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>102<\/strong>, 153302, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4801954' target='_blank'>https:\/\/doi.org\/10.1063\/1.4801954<\/a><br \/>[27]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientbulkheterojunctionphotovoltaiccellbasedontris45phenylthiophen2ylphenylamineandc70combinedwithoptimizedelectrontransportlayer' class='gray_back'><strong>[240] Highly efficient bulk heterojunction photovoltaic cells based on C70 and tetraphenyldibenzoperiflanthene<\/strong><br \/>Yan-qiong Zheng, William J Potscavage, Takeshi Komino, Masaya Hirade, Junji Adachi, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>102<\/strong>, 143304, 2013<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4801647' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4801647<\/a><br \/>[64]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#amplifiedspontaneousemissionandelectroluminescencefromthiophenephenylenecooligomerdopedpbispstyrylstyrylbenzenecrystals' class='gray_back'><strong>[239] Amplified spontaneous emission and electroluminescence from thiophene\/phenylene co-oligomer-doped p-bis(p-styrylstyryl)benzene crystals<\/strong><br \/>Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Adv. Opt. Mater.<\/i>, <strong>1<\/strong>, 422 - 427, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adom.201200066' target='_blank'>https:\/\/doi.org\/10.1002\/adom.201200066<\/a><br \/>[28]:Number of citation <br \/><font color=\"red\">Front Cover\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2013\/06\/U4_adom0613.pdf\">Advanced Optical Materials<\/a><font color=\"red\">--June 2013<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientorganiclightemittingdiodebasedonahiddenthermallyactivateddelayedfluorescencechannelinaheptazinederivative' class='gray_back'><strong>[238] Highly Efficient Organic Light-Emitting Diode Based on a Hidden Thermally Activated Delayed Fluorescence Channel in a Heptazine Derivative<\/strong><br \/>Jie Li, Tetsuya Nakagawa, James MacDonald, Qisheng Zhang, Hiroko Nomura, Hiroshi Miyazaki, Chihaya Adachi<br \/>\n<i>Adv. Mat.<\/i>, <strong>25<\/strong>, 3319 - 3323, 2013<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adma.201300575' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adma.201300575<\/a><br \/>[409]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#moleculardesignofhighmolecularorientationelectrontransportmaterialsandapplicationtoorganiclightemittingdiodes' class='gray_back'><strong>[237] Molecular Design of High-molecular-orientation Electron-transport Materials<\/strong><br \/>Kazunori Togashi, Yuta Sagara, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>42<\/strong>, 651 - 653, 2013<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1246\/cl.130150' target='_blank'>http:\/\/dx.doi.org\/10.1246\/cl.130150<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#hostmaterialconsistingofphosphinicamidedirectlylinkeddonor%e2%80%93acceptorstructureforefficientbluephosphorescentorganiclightemittingdiodes' class='gray_back'><strong>[236] A host material consisting of a phosphinic amide directly linked donor\u2013acceptor structure for efficient blue phosphorescent organic light-emitting diodes<\/strong><br \/>Atsushi Wada, Takuma Yasuda, Qisheng Zhang, Yu Seok Yang, Isao Takasu, Shintaro Enomoto, Chihaya Adachi<br \/>\n<i>J. Mater. Chem. C<\/i>, <strong>1<\/strong>, 2404 - 2407, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C3TC00939D' target='_blank'>https:\/\/doi.org\/10.1039\/C3TC00939D<\/a><br \/>[55]:Number of citation <br \/><span style=\"color: red;\">2\u6708\u306eTop 10 most-read Journal of Materials Chemistry C articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<br>\r\n<a href=\"http:\/\/blogs.rsc.org\/jm\/2013\/04\/25\/top-10-most-read-journal-of-materials-chemistry-c-articles-in-february\/\">Journal of Materials Chemistry C<\/a>--February 2013<br><\/span>\r\n<span style=\"color: red;\">2\u6708\u306b\u5f15\u304d\u7d9a\u304d\u30013\u6708\u3082Top 10 most-read Journal of Materials Chemistry C articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<br>\r\n<a href=\"http:\/\/blogs.rsc.org\/jm\/2013\/05\/08\/top-10-most-read-journal-of-materials-chemistry-c-articles-in-march2013\/\">Journal of Materials Chemistry C<\/a>--March 2013<br><\/span>\r\n<span style=\"color: red;\">2013\u5e74\u306eMost Accessed Manuscripts for Journal of Materials Chemistry C\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<br>\r\n<a href=\"http:\/\/pubs.rsc.org\/en\/journals\/articlecollectionlanding?sercode=tc&themeid=59adffea-1d41-42eb-ada5-08ed90ff84ed\">Journal of Materials Chemistry C<\/a>--2013 Most Accessed Manuscripts for Journal of Materials Chemistry C<br><\/span><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#effectsofintramoleculardonoracceptorinteractionsonbimolecularrecombinationinsmallmoleculeorganicphotovoltaiccells3' class='gray_back'><strong>[235] Effects of Intramolecular Donor-Acceptor Interactions on Bimolecular Recombination in Small-Molecule Organic Photovoltaic Cells<\/strong><br \/>Masaya Hirade, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>117<\/strong>, 4986 - 4991, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/jp400386q' target='_blank'>https:\/\/doi.org\/10.1021\/jp400386q<\/a><br \/>[17]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#fabricationandperformanceevaluationofmicrofluidicorganiclightemittingdiode' class='gray_back'><strong>[234] Fabrication and performance evaluation of microfluidic organic light emitting diode<\/strong><br \/>Takashi Kasahara, Shigeyuki Matsunami, Tomohiko Edura, Juro Oshima, Chihaya Adachi, Shuichi Shoji, Jun Mizuno<br \/>\n<i>Sens. Act. A-Phys.<\/i>, <strong>195<\/strong>, 219 - 223, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.sna.2012.12.031' target='_blank'>https:\/\/doi.org\/10.1016\/j.sna.2012.12.031<\/a><br \/>[45]:Number of citation <br \/><font color=\"red\">\u904e\u53bb3\u304b\u6708\u9593\u306eMost downloaded articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/www.journals.elsevier.com\/sensors-and-actuators-a-physical\/most-downloaded-articles\/\">Sens. Act. A-Phys.<\/a><font color=\"red\">--September 2013<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#reorganizationofthemolecularorientationattheorganicsubstrateinterfaceinspirofluorenethinfilms2' class='gray_back'><strong>[233] Reorganization of the Molecular Orientation at the Organic\/Substrate Interface in Spirofluorene Thin Films<\/strong><br \/>Takeshi Komino, Hiroko Nomura, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Chem. Phys. Lett.<\/i>, <strong>563<\/strong>, 70 - 75, 2013<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.cplett.2013.01.056' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.cplett.2013.01.056<\/a><br \/>[9]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#triphenylenebasedhostmaterialsforlowvoltageandhighlyefficientredphosphorescentorganiclightemittingdiodes' class='gray_back'><strong>[232] Triphenylene-based Host Materials for Low-voltage and Highly Efficient Red Phosphorescent Organic Light-emitting Diodes<\/strong><br \/>Kazunori Togashi, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>42<\/strong>, 383 - 385, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.121247' target='_blank'>https:\/\/doi.org\/10.1246\/cl.121247<\/a><br \/>[8]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientpersistentroomtemperaturephosphorescenceinorganicamorphousmaterialsunderambientconditions2' class='gray_back'><strong>[231] Efficient Persistent Room Temperature Phosphorescence in Organic Amorphous Materials under Ambient Conditions<\/strong><br \/>Shuzo Hirata, Kenro Totani, Junxiang Zhang, Takashi Yamashita, Hironori Kaji, Seth R. Marder, Toshiyuki Watanabe, Chihaya Adachi<br \/>\n<i>Adv. Func. Mat.<\/i>, <strong>23<\/strong>, 3386 - 3397, 2013<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.201203706' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.201203706<\/a><br \/>[585]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#bifunctionalstarburstamorphousmolecularmaterialsforoledsachievinghighlyefficientsolidstateluminescenceandcarriertransportinducedbyspontaneousmolecularorientation' class='gray_back'><strong>[230] Bifunctional Star-Burst Amorphous Molecular Materials for OLEDs: Achieving Highly Efficient Solid-State Luminescence and Carrier Transport Induced by Spontaneous Molecular Orientation<\/strong><br \/>Jun Yun Kim, Takuma Yasuda, Yu Seok Yang, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>25<\/strong>, 2666 - 2671, 2013<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1002\/adma.201204902' target='_blank'>http:\/\/dx.doi.org\/10.1002\/adma.201204902<\/a><br \/>[84]:Number of citation <br \/><font color=\"red\">\u8868\u7d19\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/adma.201370122\/pdf\">Advanced Materials<\/a><font color=\"red\">--May 2013<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2012'>2012<\/h4><div rel='#electroluminescencebasedonthermallyactivateddelayedfluorescencegeneratedbyaspirobifluorenedonoracceptorstructure2' class='gray_back'><strong>[439] Electroluminescence Based on Thermally Activated Delayed Fluorescence Generated by a Spirobifluorene Donor-Acceptor Structure<\/strong><br \/>Tetsuya Nakagawa, Sung-Yu Ku, Ken-Tsung Wong, Chihaya Adachi<br \/>\n<i>Chem. Comm.<\/i>, <strong>48<\/strong>, 9580 - 9582, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C2CC31468A' target='_blank'>https:\/\/doi.org\/10.1039\/C2CC31468A<\/a><br \/>[395]:Number of citation <br \/><font color=\"red\">\u80cc\u8868\u7d19\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/pubs.rsc.org\/en\/Content\/ArticleLanding\/2012\/CC\/c2cc31468a\">Chemical Communications<\/a><font color=\"red\">--April 2012<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientorganiclightemittingdiodesfromdelayedfluorescence' class='gray_back'><strong>[229] Highly efficient organic light-emitting diodes from delayed fluorescence<\/strong><br \/>Hiroki Uoyama, Kenichi Goushi, Katsuyuki Shizu, Hiroko Nomura, Chihaya Adachi<br \/>\n<i>Nature<\/i>, <strong>492<\/strong>, 234 - 238, 2012<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1038\/nature11687 ' target='_blank'>http:\/\/dx.doi.org\/10.1038\/nature11687 <\/a><br \/>[5424]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#fluorinatedcarbazolederivativesaswideenergygaphostmaterialforbluephosphorescentorganiclightemittingdiodes' class='gray_back'><strong>[228] Fluorinated Carbazole Derivatives as Wide-Energy-Gap Host Material for Blue Phosphorescent Organic Light-Emitting Diodes<\/strong><br \/>Yukitami Mizuno, Isao Takasu, Shuichi Uchikoga, Shintaro Enomoto, Tomoaki Sawabe, Akiko Amano, Atsushi Wada, Tomoko Sugizaki, Jiro Yoshida, Tomio Ono, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>116<\/strong>, 20681 - 20687, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/jp303085h' target='_blank'>https:\/\/doi.org\/10.1021\/jp303085h<\/a><br \/>[29]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organicsinglecrystaltransistorsbasedon%cf%80extendedheteroheptacenemicroribbons2' class='gray_back'><strong>[227] Efficient green thermally activated delayed fluorescence (TADF) from a phenoxazine-triphenyltriazine (PXZ-TRZ) derivative<\/strong><br \/>Hiroyuki Tanaka, Katsuyuki Shizu, Hiroshi Miyazaki, Chihaya Adachi <br \/>\n<i>Chem. Comm.<\/i>, <strong>48<\/strong>, 11392 - 11394, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C2CC36237F' target='_blank'>https:\/\/doi.org\/10.1039\/C2CC36237F<\/a><br \/>[594]:Number of citation <br \/><font color=\"red\">\u8868\u7d19\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/pubs.rsc.org\/en\/content\/articlepdf\/2012\/cc\/c2cc36237f\">Chemical Communications<\/a><font color=\"red\">--October 2012<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organicsinglecrystaltransistorsbasedon%cf%80extendedheteroheptacenemicroribbons22' class='gray_back'><strong>[226] Enhanced Electroluminescence Efficiency in a Spiro-Acridine Derivative through Thermally Activated Delayed Fluorescence<\/strong><br \/>Gabor Mehes, Hiroko Nomura, Qisheng Zhang, Tetsuya Nakagawa, Chihaya Adachi <br \/>\n<i>Angewandte Chemie International Edition<\/i>, <strong>51<\/strong>, 11311 - 11315, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/anie.201206289' target='_blank'>https:\/\/doi.org\/10.1002\/anie.201206289<\/a><br \/>[484]:Number of citation <br \/><span style=\"color: red;\">Very Important Paper (VIP)\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<br><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#designofefficientthermallyactivateddelayedfluorescencematerialsforpureblueorganiclightemittingdiodes' class='gray_back'><strong>[225] Design of Efficient Thermally Activated Delayed Fluorescence Materials for Pure Blue Organic Light Emitting Diodes<\/strong><br \/>Qisheng Zhang, Jie Li, Katsuyuki Shizu, Shuping Huang, Shuzo Hirata, Hiroshi Miyazaki, Chihaya Adachi<br \/>\n<i>J Am. Chem. Soc.<\/i>, <strong>134<\/strong>, 14706 - 14709, 2012<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1021\/ja306538w' target='_blank'>http:\/\/dx.doi.org\/10.1021\/ja306538w<\/a><br \/>[1358]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organicsinglecrystaltransistorsbasedon%cf%80extendedheteroheptacenemicroribbons' class='gray_back'><strong>[224] Organic Single-Crystal Transistors Based on \u03c0-Extended Heteroheptacene Microribbons<\/strong><br \/>Yu Seok Yang, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>Bull. Chem. Soc. Jpn<\/i>, <strong>85<\/strong>, 1186 - 1191, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/bcsj.20120178' target='_blank'>https:\/\/doi.org\/10.1246\/bcsj.20120178<\/a><br \/>[17]:Number of citation <br \/><font color=\"red\">\u8868\u7d19\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<span style=\"color: red;\">BCSJ\u8ad6\u6587\u8cde\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<br>\r\n<a href=\"http:\/\/www.csj.jp\/journals\/bcsj\/bam\/bcsj_headline.html\">Bulletin of the Chemical Society of Japan<\/a><font color=\"red\">--November 2012<\/font><br \/><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowdrivingvoltagecharacteristicsoftriphenylenederivativesaselectrontransportmaterialsinorganiclightemittingdiodes' class='gray_back'><strong>[223] Low Driving Voltage Characteristics of Triphenylene Derivatives as Electron Transport Materials in Organic Light-Emitting Diodes<\/strong><br \/>Kazunori Togashi, Shintaro Nomura, Norimasa Yokoyama, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>J. Mater. Chem.<\/i>, <strong>22<\/strong>, 20689 - 20695, 2012<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1039\/C2JM33669C' target='_blank'>http:\/\/dx.doi.org\/10.1039\/C2JM33669C<\/a><br \/>[95]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencyorganiclightemittingdiodesutilizingthermallyactivateddelayedfluorescencefromtriazinebaseddonoracceptorhybridmolecules' class='gray_back'><strong>[222] High-efficiency organic light-emitting diodes utilizing thermally-activated delayed fluorescence from triazine-based donor-acceptor hybrid molecules<\/strong><br \/>Sae Youn Lee, Takuma Yasuda, Hiroko Nomura, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>101<\/strong>, 93306, 2012<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.4749285' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.4749285<\/a><br \/>[304]:Number of citation <br \/><span style=\"color: red;\">9\u6708\u306eTop 20 Most Read Articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<br>\r\n<a href=\"http:\/\/apl.aip.org\/features\/most_downloaded?month=9&year=2012\">Applied Physics Letters<\/a>--September 2012<br><\/span>\r\n<span style=\"color: red;\">Editor's Choice 2012\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<br>\r\n<a href=\"http:\/\/scitation.aip.org\/content\/aip\/journal\/apl\/info\/collections\">Applied Physics Letters<\/a><br><\/span><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#performanceofanorganicphotodiodeasanopticaldetectoranditsapplicationtofluorometricflowimmunoassayforiga' class='gray_back'><strong>[221] Performance of an organic photodiode as an optical detector and its application to fluorometric flow-immunoassay for IgA<\/strong><br \/>Mayo Miyake, Hizuru Nakajima, Akihide Hemmi, Masayuki Yahiro, Chihaya Adachi, Nobuaki Soh, Ryoichi Ishimatsu, Koji Nakano, Katsumi Uchiyama, Toshihiko Imato<br \/>\n<i>Talanta<\/i>, <strong>96<\/strong>, 132 - 139, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.talanta.2012.02.006' target='_blank'>https:\/\/doi.org\/10.1016\/j.talanta.2012.02.006<\/a><br \/>[28]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#formationofnanostructureddonoracceptorinterfacesandtheirapplicationtoorganicphotovoltaiccells' class='gray_back'><strong>[220] Formation of Nanostructured Donor\/Acceptor Interfaces and Their Application to Organic Photovoltaic Cells<\/strong><br \/>Manabu Nakata, Kenji Kawano, Mao Yasumatsu, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Thin Solid Films<\/i>, <strong>522<\/strong>, 357 - 360, 2012<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1016\/j.tsf.2012.08.008' target='_blank'>http:\/\/dx.doi.org\/10.1016\/j.tsf.2012.08.008<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyluminescent%cf%80conjugateddithienometallolesphotophysicalpropertiesandtheirapplicationinorganiclightemittingdiodes' class='gray_back'><strong>[219] Highly luminescent \u03c0-conjugated dithienometalloles: photophysical properties and their application in organic light-emitting diodes<\/strong><br \/>Ryosuke Kondo, Takuma Yasuda, Yu Seok Yang, Jun Yun Kim, Chihaya Adachi<br \/>\n<i>J. Mater. Chem.<\/i>, <strong>22<\/strong>, 16810 - 16816, 2012<br \/>DOI: <a href='DOI\thttps:\/\/doi.org\/10.1039\/C2JM33526C' target='_blank'>DOI\thttps:\/\/doi.org\/10.1039\/C2JM33526C<\/a><br \/>[35]:Number of citation <br \/><span style=\"color: red;\">7\u6708\u306eTop 10 most-read Journal of Materials Chemistry articles\u9078\u3070\u308c\u307e\u3057\u305f\uff01<br>\r\n<a href=\"http:\/\/blogs.rsc.org\/jm\/2012\/10\/15\/top-10-most-read-journal-of-materials-chemistry-articles-in-july\/\" target=\"_blank\" style=\"text-decoration:none;\">Journal of Materials Chemistry<\/a>--July 2012<br><\/span><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientorganiclightemittingdiodesthroughupconversionfromtriplettosingletexcitedstatesofexciplexes' class='gray_back'><strong>[218] Efficient organic light-emitting diodes through up-conversion from triplet to singlet excited states of exciplexes<\/strong><br \/>Kenichi Goushi, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>101<\/strong>, 23306, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4737006' target='_blank'>https:\/\/doi.org\/10.1063\/1.4737006<\/a><br \/>[262]:Number of citation <br \/><font color=\"red\">7\u6708\u306eTop 20 Most Downloaded Articles\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/apl.aip.org\/features\/most_downloaded?month=7&year=2012\">Applied Physics Letters<\/a><font color=\"red\">--July 2012<\/font><br \/>\r\n<font color=\"red\">Editor's Choice 2012\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/scitation.aip.org\/content\/aip\/journal\/apl\/info\/collections\">Applied Physics Letters<\/a><font color=\"red\"><\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#uniformandrefreshableliquidelectroluminescentdevicewithabacksidereservoir' class='gray_back'><strong>[217] Uniform and Refreshable Liquid Electroluminescent Device with a Back Side Reservoir<\/strong><br \/>Chang-Hoon Shim, Shuzo Hirata, Juro Oshima, Tomohiko Edura, Reiji Hattori, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>101<\/strong>, 113302, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4749791' target='_blank'>https:\/\/doi.org\/10.1063\/1.4749791<\/a><br \/>[24]:Number of citation <br \/><font color=\"red\">\u8868\u7d19\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/apl.aip.org\/resource\/1\/applab\/v101\/i11\">Applied Physics Letters<\/a><font color=\"red\">--September 2012<\/font><br \/>\r\n<span style=\"color: red;\">9\u6708\u306eTop 20 Most Read Articles\u9078\u3070\u308c\u307e\u3057\u305f\uff01<br>\r\n<a href=\"http:\/\/apl.aip.org\/features\/most_downloaded?month=9&year=2012\">Applied Physics Letters<\/a>--September 2012<br><\/span><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#liquidcarbazolesubstitutedwithapolyethyleneoxidegroupanditsapplicationforliquidorganiclightemittingdiodes' class='gray_back'><strong>[216] Liquid Carbazole Substituted with a Polyethylene Oxide Group and its Application for Liquid Organic Light Emitting Diodes<\/strong><br \/>Korefumi Kubota, Shuzo Hirata, Yuki Shibano, Osamu Hirata, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>41<\/strong>, 934 - 936, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.2012.934' target='_blank'>https:\/\/doi.org\/10.1246\/cl.2012.934<\/a><br \/>[32]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#veryhighopencircuitvoltageof589vinorganicsolarcellswith10foldtandemstructure' class='gray_back'><strong>[215] Very high open-circuit voltage of 5.89 V in organic solar cells with 10-fold-tandem structure<\/strong><br \/>Ye Zou, Zhenbo Deng, William J Potscavage, Masaya Hirade, Yanqiong Zheng, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>100<\/strong>, 243302, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4729009' target='_blank'>https:\/\/doi.org\/10.1063\/1.4729009<\/a><br \/>[26]:Number of citation <br \/><font color=\"red\">6\u6708\u306eTop 20 Most Downloaded Articles\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/apl.aip.org\/features\/most_downloaded?month=6&year=2012\">Applied Physics Letters<\/a><font color=\"red\">--June 2012<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#realtimemeasurementofmolecularorientationalrandomizationdynamicsduringannealingtreatmentsbyinsituellipsometry' class='gray_back'><strong>[214] Real-Time Measurement of Molecular Orientational Randomization Dynamics during Annealing Treatments by In-Situ Ellipsometry<\/strong><br \/>Takeshi Komino, Hiroko Nomura, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>116<\/strong>, 11584 - 11588, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/jp302158k' target='_blank'>https:\/\/doi.org\/10.1021\/jp302158k<\/a><br \/>[20]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#identificationofdevicedegradationpositionsinmultilayeredphosphorescentorganiclightemittingdevicesusingwaterprobes' class='gray_back'><strong>[213] Identification of device degradation positions in multi-layered phosphorescent organic light emitting devices using water probes<\/strong><br \/>Hitoshi Yamamoto, Chihaya Adachi, Michael S. Weaver, Julie J. Brown<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>100<\/strong>, 183306, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.4711129' target='_blank'>https:\/\/doi.org\/10.1063\/1.4711129<\/a><br \/>[25]:Number of citation <br \/><font color=\"red\">5\u6708\u306eTop 20 Most Downloaded Articles\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/apl.aip.org\/features\/most_downloaded?month=5&year=2012\">Applied Physics Letters<\/a><font color=\"red\">--May 2012<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#22binaphtho23bfuranylaversatileorganicsemiconductorwithafuranfuranjunction2' class='gray_back'><strong>[212] [2,2']Bi[naphtho[2,3-b]furanyl]: a versatile organic semiconductor with a furan-furan junction<\/strong><br \/>K. Niimi, H. Mori, E. Miyazaki, I. Osaka, H. Kakizoe, K. Takimiya, C. Adachi<br \/>\n<i>Chem. Comm.<\/i>, <strong>48<\/strong>, 5892 - 5894, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C2CC31960H' target='_blank'>https:\/\/doi.org\/10.1039\/C2CC31960H<\/a><br \/>[72]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientluminescencefromacoppericomplexdopedinorganiclightemittingdiodesbysuppressingchvibrationalquenching' class='gray_back'><strong>[210] Efficient Luminescence from a Copper(I) Complex Doped in Organic Light-Emitting Diodes by Suppressing C-H Vibrational Quenching<\/strong><br \/>Atsushi Wada, Qisheng Zhang, Takuma Yasuda, Isao Takasu, Shintaro Enomoto, Chihaya Adachi<br \/>\n<i>Chem. Comm.<\/i>, <strong>48<\/strong>, 5340 - 5342, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C2CC31509B' target='_blank'>https:\/\/doi.org\/10.1039\/C2CC31509B<\/a><br \/>[91]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#reversiblecolorationenhancedbyelectrochemicaldepositionofanultrathinzinclayerontoananodicnanoporousaluminalayer' class='gray_back'><strong>[209] Reversible Coloration Enhanced by Electrochemical Deposition of an Ultra-thin Zinc Layer onto an Anodic Nanoporous Alumina Layer<\/strong><br \/>Shuzo Hirata, Toshiro Tsuji, Yoshimine Kato, Chihaya Adachi<br \/>\n<i>Adv. Funct. Mater.<\/i>, <strong>22<\/strong>, 20, 4195 - 4201, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.201200353' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.201200353<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#horizontalorientationofdisklikeholetransportmoleculesandtheirapplicationfororganiclightemittingdiodesrequiringlowerdrivingvoltage' class='gray_back'><strong>[208] Horizontal Orientation of Disk-like Hole Transport Molecules and their Application for Organic Light-Emitting Diodes Requiring Lower Driving Voltage<\/strong><br \/>Jun-yun Kim, Daisuke Yokoyama, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>116<\/strong>, 8699 - 8706, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/jp301650x' target='_blank'>https:\/\/doi.org\/10.1021\/jp301650x<\/a><br \/>[52]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#tripletexcitonconfinementingreenorganiclightemittingdiodescontainingluminescentchargetransfercuicomplexes' class='gray_back'><strong>[207] Triplet Exciton Confinement in Green Organic Light-Emitting Diodes Containing Luminescent Charge-Transfer Cu(I) Complexes<\/strong><br \/>Qisheng Zhang, Takeshi Komino, Shuping Huang, Shigeyuki Matsunami, Kenichi Goushi, Chihaya Adachi<br \/>\n<i>Adv. Funct. Mater.<\/i>, <strong>22<\/strong>, 2327 - 2336, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.201101907' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.201101907<\/a><br \/>[297]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organiclightemittingdiodesemployingefficientreverseintersystemcrossingfortriplettosingletstateconversion' class='gray_back'><strong>[206] Organic light-emitting diodes employing efficient reverse intersystem crossing for triplet-to-singlet state conversion<\/strong><br \/>Kenichi Goushi, Kou Yoshida, Keigo Sato, Chihaya Adachi<br \/>\n<i>Nature Photonics<\/i>, <strong>6<\/strong>, 253 - 258, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1038\/nphoton.2012.31' target='_blank'>https:\/\/doi.org\/10.1038\/nphoton.2012.31<\/a><br \/>[1374]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#improveddevicelifetimeoforganiclightemittingdiodeswithanelectrochemicallystableconjugatedliquidhostintheliquidemittinglayer' class='gray_back'><strong>[205] Improved Device Lifetime of Organic Light Emitting Diodes with an Electrochemically Stable-Conjugated Liquid Host in the Liquid Emitting Layer<\/strong><br \/>Shuzo Hirata, Hyo Jung Heo, Yuki Shibano, Osamu Hirata, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>51<\/strong>, 41604, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1143\/JJAP.51.041604' target='_blank'>https:\/\/doi.org\/10.1143\/JJAP.51.041604<\/a><br \/>[28]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#adicarbazoletriazinehybridbipolarhostmaterialforhighlyefficientgreenphosphorescentoleds' class='gray_back'><strong>[204] A dicarbazole-triazine hybrid bipolar host material for highly efficient green phosphorescent OLEDs<\/strong><br \/>Chih-Hao Chang, Ming-Cheng Kuo, Wei-Chieh Lin, Yu-Ting Chen, Ken-Tsung Wong, Shu-Hua Chou, Ejabul Mondal, Raymond C. Kwong, Sean Xia, Tetsuya Nakagawa and Chihaya Adachi<br \/>\n<i>J. Mater. Chem.<\/i>, <strong>22<\/strong>, 3832 - 3838, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1039\/C2JM14686J' target='_blank'>https:\/\/doi.org\/10.1039\/C2JM14686J<\/a><br \/>[118]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#synthesisandcharacterizationofcdsenanocrystalscappedwithtopoandpyridine' class='gray_back'><strong>[203] Synthesis and characterization of CdSe nanocrystals capped with TOPO and pyridine<\/strong><br \/>Xiang Dong Luo, Umme Farva, Nguyen Tam Nguyen Truong, Kyung Soo Son, Pei Sheng Liu, Chihaya Adachi, Chinho Park<br \/>\n<i>Journal of Crystal Growth<\/i>, <strong>339<\/strong>, 22 - 30, 2012<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.jcrysgro.2011.11.048' target='_blank'>https:\/\/doi.org\/10.1016\/j.jcrysgro.2011.11.048<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2011'>2011<\/h4><div rel='#anintegratedenzymelinkedimmunosorbentassaysystemwithanorganiclightemittingdiodeandachargecoupleddeviceforfluorescencedetection' class='gray_back'><strong>[202] An integrated enzyme-linked immunosorbent assay system with an organic light-emitting diode and a charge-coupled device for fluorescence detection<\/strong><br \/>Hizuru Nakajima, Yukiko Okuma, Kazuhiro Morioka, Mayo Miyake, Akihide Hemmi, Tatsuya Tobita, Masayuki Yahiro, Daisuke Yokoyama, Chihaya Adachi, Nobuaki Soh, Koji Nakano, Shuhua Xue, Hulie Zeng, Katsumi Uchiyama, Toshihiko Imato<br \/>\n<i>J. Sep. Sci.<\/i>, <strong>34<\/strong>, 2906 - 2912, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/jssc.201100429' target='_blank'>https:\/\/doi.org\/10.1002\/jssc.201100429<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#dependenceoftheamplifiedspontaneousemissionthresholdinspirofluorenethinfilmsonmolecularorientation' class='gray_back'><strong>[201] Dependence of the Amplified Spontaneous Emission Threshold in Spirofluorene Thin Films on Molecular Orientation<\/strong><br \/>Takeshi Komino, Hiroko Nomura, Masayuki Yahiro, Kuniaki Endo, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>115<\/strong>, 19890 - 19896, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/jp2007717' target='_blank'>https:\/\/doi.org\/10.1021\/jp2007717<\/a><br \/>[37]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#smallmolecularorganicphotovoltaiccellswithexcitonblockinglayeratanodeinterfaceforimproveddeviceperformance' class='gray_back'><strong>[200] Small molecular organic photovoltaic cells with exciton blocking layer at anode interface for improved device performance<\/strong><br \/>Masaya Hirade, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>99<\/strong>, 153302, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.3650472' target='_blank'>https:\/\/doi.org\/10.1063\/1.3650472<\/a><br \/>[90]:Number of citation <br \/><font color=\"red\">10\u6708\u306eTop 20 Most Downloaded Articles\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href=\"http:\/\/apl.aip.org\/features\/most_downloaded?month=10&year=2011\">Applied Physics Letters<\/a><font color=\"red\">--Oct 2011<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermoelectricpropertiesofntypec60thinfilmsandtheirapplicationinorganicthermovoltaicdevices' class='gray_back'><strong>[199] Thermoelectric Properties of n-type C<sub>60<\/sub> Thin Films and Their Application in Organic Thermovoltaic Devices<\/strong><br \/>Mao Sumino, Kentaro Harada, Masaaki Ikeda, Saburo Tanaka, Koji Miyazaki, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>99<\/strong>, 93308, 2011<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.3631633' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.3631633<\/a><br \/>[84]:Number of citation <br \/><font color=\"red\">9\u670819\u65e5\u5206\u306eVirtual Journal\u306b\u9078\u5b9a\u3055\u308c\u307e\u3057\u305f\u3002<\/font><br \/>\r\n<a href=\"http:\/\/www.vjnano.org\/dbt\/dbt.jsp?KEY=VIRT01&Volume=24&Issue=12\">Virtual Journal<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highcarriermobilityof38cm2v1s1inpolydiacetylenethinfilmspolymerizedbyelectronbeamirradiation2' class='gray_back'><strong>[198] High Carrier Mobility of 3.8 cm<sup>2<\/sup>V<sup>-1<\/sup>s<sup>-1<\/sup> in Polydiacetylene Thin-Films Polymerized by Electron Beam Irradiation<\/strong><br \/>Takuji Kato, Mao Yasumatsu, Chikako Origuchi, Kyoji Tsutsui, Yasukiyo Ueda, Chihaya Adachi<br \/>\n<i>Appl. Phys. Exp.<\/i>, <strong>4<\/strong>, 91601, 2011<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1143\/APEX.4.091601' target='_blank'>http:\/\/dx.doi.org\/10.1143\/APEX.4.091601<\/a><br \/>[13]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#twodimensionalorientationcontroloforganicsemiconductingamorphousfilmsbymechanicalbrushing' class='gray_back'><strong>[197] Two-dimensional orientation control of organic semiconducting amorphous films by mechanical brushing<\/strong><br \/>Toshiharu Arai, Kenichi Goushi, Hiroko Nomura, Tomohiko Edura, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>99<\/strong>, 53303, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.3608315' target='_blank'>https:\/\/doi.org\/10.1063\/1.3608315<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#pinhomojunctioninorganiclightemittingtransistors' class='gray_back'><strong>[196] p-i-n Homojunction in Organic Light-Emitting Transistors<\/strong><br \/>Satria Zulkarnaen Bisri, Taishi Takenobu, Kosuke Sawabe, Satoshi Tsuda, Yohei Yomogida, Takeshi Yamao, Shu Hotta, Chihaya Adachi, Yoshihiro Iwasa<br \/>\n<i>Adv. Mater.<\/i>, <strong>23<\/strong>, 2753 - 2758, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.201004572' target='_blank'>https:\/\/doi.org\/10.1002\/adma.201004572<\/a><br \/>[75]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#horizontalorientationofalinearshapedplatinumiicomplexinorganiclightemittingdiodeswithahighlightoutcouplingefficiency' class='gray_back'><strong>[195] Horizontal Orientation of a Linear-Shaped Platinum(II) Complex in Organic Light-Emitting Diodes with a High Light Out-Coupling Efficiency<\/strong><br \/>Masatsugu Taneda, Takuma Yasuda, Chihaya Adachi<br \/>\n<i>Appl. Phys. Exp.<\/i>, <strong>4<\/strong>, 71602, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1143\/APEX.4.071602' target='_blank'>https:\/\/doi.org\/10.1143\/APEX.4.071602<\/a><br \/>[23]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#phenanthrenefunctionalized36dithiophen2yl25dihydropyrrolo34cpyrrole14dionesasdonormoleculesforsolutionprocessedorganicphotovoltaiccells' class='gray_back'><strong>[194] Phenanthrene-Functionalized 3,6-Dithiophen-2-yl-2,5-dihydropyrrolo[3,4-c]pyrrole -1,4-diones as Donor Molecules for Solution-Processed Organic Photovoltaic Cells<\/strong><br \/>Zhonglian Wu, Aiyuan Li, Benhu Fan, Feng Xue, Chihaya Adachi, Jianyong Ouyang<br \/>\n<i>Sol. Energ. Mater. Sol. Cell<\/i>, <strong>95<\/strong>, 2516 - 2523, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.solmat.2011.05.006' target='_blank'>https:\/\/doi.org\/10.1016\/j.solmat.2011.05.006<\/a><br \/>[40]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organicelectrodesconsistingofdianthratetrathiafulvaleneandfullereneandtheirapplicationinorganicfieldeffecttransistors' class='gray_back'><strong>[193] Organic Electrodes Consisting of Dianthratetrathiafulvalene and Fullerene and Their Application in Organic Field Effect Transistors<\/strong><br \/>Takuji Kato, Chikako Origuchi, Masato Shinoda, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys<\/i>, <strong>50<\/strong>, 50202, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1143\/JJAP.50.050202' target='_blank'>https:\/\/doi.org\/10.1143\/JJAP.50.050202<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#increasedlightoutcouplingefficiencyindyedopedsmallmoleculeorganiclightemittingdiodeswithhorizontallyorientedemitters' class='gray_back'><strong>[192] Increased light outcoupling efficiency in dye-doped small molecule organic light-emitting diodes with horizontally oriented emitters<\/strong><br \/>Jorg Frischeisen, Daisuke Yokoyama, Ayataka Endo, Chihaya Adachi, Wolfgang Brutting<br \/>\n<i>Organic Electoronics<\/i>, <strong>12<\/strong>, 809 - 817, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.orgel.2011.02.005' target='_blank'>https:\/\/doi.org\/10.1016\/j.orgel.2011.02.005<\/a><br \/>[177]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photophysicalcharacteristicsof44%e2%80%99bisncarbazolyltolanderivativesandtheirapplicationinorganiclightemittingdiodes' class='gray_back'><strong>[191] Photophysical characteristics of 4,4\u2019-bis(N-carbazolyl)tolan derivatives and their application in organic light emitting diodes<\/strong><br \/>Masakazu Ohkita, Ayataka Endo, Kimihiro Sumiya, Hajime Nakanotani, Takanori Suzuki, Chihaya Adachi<br \/>\n<i>J. Luminescence<\/i>, <strong>131<\/strong>, 1520 - 1524, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.jlumin.2011.01.028' target='_blank'>https:\/\/doi.org\/10.1016\/j.jlumin.2011.01.028<\/a><br \/>[11]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#molecularstackinginducedbyintermolecularch%e3%83%bb%e3%83%bb%e3%83%bbnhydrogenbondsleadingtohighcarriermobilityinvacuumdepositedorganicfilms' class='gray_back'><strong>[190] Molecular Stacking Induced by Intermolecular C\u2013H\u00b7\u00b7\u00b7N Hydrogen Bonds Leading to High Carrier Mobility in Vacuum-Deposited Organic Films<\/strong><br \/>Daisuke Yokoyama, Hisahiro Sasabe, Yukio Furukawa, Chihaya Adachi, Junji Kido<br \/>\n<i>Adv. Func. Mat.<\/i>, <strong>21<\/strong>, 1375 - 1382, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.201001919' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.201001919<\/a><br \/>[134]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyphotostabledistributedfeedbackpolymerwaveguidebluelaserusingspirobifluorenederivatives' class='gray_back'><strong>[189] Highly photostable distributed-feedback polymer waveguide blue laser using spirobifluorene derivatives<\/strong><br \/>Hirotaka So, Hirofumi Watanabe, Masayuki Yahiro, Yu Yang, Yuji Oki, Chihaya Adachi<br \/>\n<i>Opt. Mat.<\/i>, <strong>33<\/strong>, 755 - 758, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.optmat.2010.12.011' target='_blank'>https:\/\/doi.org\/10.1016\/j.optmat.2010.12.011<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientupconversionoftripletexcitonsintoasingletstateanditsapplicationfororganiclightemittingdiodes' class='gray_back'><strong>[188] Efficient up-conversion of triplet excitons into a singlet state and its application for organic light emitting diodes<\/strong><br \/>Ayataka Endo, Keigo Sato, Kazuaki Yoshimura, Takahiro Kai, Atsushi Kawada, Hiroshi Miyazaki, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>98<\/strong>, 83302, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.3558906' target='_blank'>https:\/\/doi.org\/10.1063\/1.3558906<\/a><br \/>[868]:Number of citation <br \/><font color='red'>Top 20 Most Downloaded Articles\u306b3\u6708\u30014\u6708\u3068\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href='http:\/\/apl.aip.org\/resource\/1\/applab\/v98\/i8\/p083302_s1?bypassSSO=1'>Applied Physics Letters<\/a>-- March 2011, April 2011<\/font><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#improvementofelectroluminescenceperformanceoforganiclightemittingdiodeswithaliquidemittinglayerbyintroductionofelectrolyteandaholeblockinglayer' class='gray_back'><strong>[187] Improvement of electroluminescence performance of organic light emitting diodes with a liquid emitting layer by introduction of electrolyte and a hole-blocking layer<\/strong><br \/>Shuzo Hirata, Korefumi Kubota, Heo Hyo Jung, Osamu Hirata, Kenichi Goushi, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>23<\/strong>, 889 - 893, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adma.201003505' target='_blank'>https:\/\/doi.org\/10.1002\/adma.201003505<\/a><br \/>[89]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#formationoforganiccrystallinenanopillararraysandtheirapplicationtoorganicphotovoltaiccells' class='gray_back'><strong>[186] Formation of Organic Crystalline Nanopillar Arrays and Their Application to Organic Photovoltaic Cells<\/strong><br \/>Masaya Hirade, Hajime Nakanotani, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Appl. Mat. Int.<\/i>, <strong>3<\/strong>, 80 - 83, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/am100915s' target='_blank'>https:\/\/doi.org\/10.1021\/am100915s<\/a><br \/>[52]:Number of citation <br \/><font color='red'>Top 10 Most Read Articles for Q1 2011 for ACS Applied Materials & Interfaces\u306b\u9078\u3070\u308c\u307e\u3057\u305f\uff01<\/font><br \/>\r\n<a href='http:\/\/pubs.acs.org\/journal\/aamick'>Applied Materials & Interfaces<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancedfigureofmeritofaporousthinfilmofbismuthantimonytelluride' class='gray_back'><strong>[185] Enhanced Figure of Merit of a Porous Thin Film of Bismuth Antimony Telluride<\/strong><br \/>Makoto Kashiwagi, Shuzo Hirata, Kentaro Harada, Yanqiong Zheng, Masayuki Yahiro, Chihaya Adachi, Koji Miyazaki<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>98<\/strong>, 23114, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.3543852' target='_blank'>https:\/\/doi.org\/10.1063\/1.3543852<\/a><br \/>[92]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#strategiesforlightextractionfromsurfaceplasmonsinorganiclightemittingdiodes' class='gray_back'><strong>[184] Strategies for light extraction from surface plasmons in organic light-emitting diodes<\/strong><br \/>Jorg Frischeisen, Bert Scholz, Benedikt Arndt, Tobias Schmidt, Robert Gehlhaar, Chihaya Adachi, Wolfgang Brutting<br \/>\n<i>J. Photonics for Energy<\/i>, <strong>1<\/strong>, 1, 11004, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1117\/1.3523314' target='_blank'>https:\/\/doi.org\/10.1117\/1.3523314<\/a><br \/>[22]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyconductiveinterfacebetweenarubrenesinglecrystalandamolybdenumoxidelayeranditsapplicationintransistors' class='gray_back'><strong>[183] Highly conductive interface between a rubrene single crystal and a molybdenum oxide layer and its application in transistors<\/strong><br \/>Hajime Nakanotani, Hayato Kakizoe, Chihaya Adachi<br \/>\n<i>Solid State Comm.<\/i>, <strong>151<\/strong>, 93 - 96, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.ssc.2010.10.004' target='_blank'>https:\/\/doi.org\/10.1016\/j.ssc.2010.10.004<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lightextractionfromsurfaceplasmonsandwaveguidemodeswithnanoimprintedgratingsinorganiclightemittingdiodes' class='gray_back'><strong>[182] Light extraction from surface plasmons and waveguide modes with nanoimprinted gratings in organic light-emitting diodes<\/strong><br \/>Joerg Frischeisen, Quan Niu, Robert Gehlhaar, Giuseppe Scarpa, Chihaya Adachi, Paolo Lugli, Wolfgang Brutting<br \/>\n<i>Optical Express<\/i>, <strong>19<\/strong>, A7 - A19, 2011<br \/>DOI: <a href='https:\/\/doi.org\/10.1364\/OE.19.0000A7' target='_blank'>https:\/\/doi.org\/10.1364\/OE.19.0000A7<\/a><br \/>[57]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2010'>2010<\/h4><div rel='#nanocrystalgrowthandimprovedperformanceofsmallmoleculebulkheterojunctionsolarcellscomposedofablendofchloroaluminumphthalocyanineandc70' class='gray_back'><strong>[181] Nanocrystal growth and improved performance of small molecule bulk heterojunction solar cells composed of a blend of chloroaluminum phthalocyanine and C70<\/strong><br \/>Kentaro Harada, Tomohiko Edura, Chihaya Adachi<br \/>\n<i>Appl. Phys. Exp.<\/i>, <strong>3<\/strong>, 121602, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/APEX.3.121602' target='_blank'>http:\/\/doi.org\/10.1143\/APEX.3.121602<\/a><br \/>[13]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#fluorosubstitutedphenyleneethynylenesacetylenicntypeorganicsemiconductors' class='gray_back'><strong>[180] Fluoro-substituted Phenyleneethynylenes: Acetylenic n-Type Organic Semiconductors<\/strong><br \/>Daisuke Matsuo, Xin Yang, Akiko Hamada, Kyo Morimoto, Takuji Kato, Masayuki Yahiro, Chihaya Adachi, Akihiro Orita, Junzo Otera<br \/>\n<i>Chem. Lett.<\/i>, <strong>39<\/strong>, 1300 - 1302, 2010<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/cl.2010.1300' target='_blank'>https:\/\/doi.org\/10.1246\/cl.2010.1300<\/a><br \/>[24]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organicmoleculesbasedondithienyl213benzothiadiazoleasnewdonormaterialsforsolutionprocessedorganicphotovoltaiccellssolarenergymaterialsandsolarcells' class='gray_back'><strong>[179] Organic molecules based on dithienyl-2,1,3-benzothiadiazole as new donor materials for solution-processed organic photovoltaic cells Solar Energy Materials and Solar Cells<\/strong><br \/>Zhonglian Wu, Benhu Fan, Feng Xue, Chihaya Adachi, Jianyong Ouyang<br \/>\n<i>Solar Energy Mat.<\/i>, <strong>94<\/strong>, 2230 - 2237, 2010<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.solmat.2010.07.017' target='_blank'>https:\/\/doi.org\/10.1016\/j.solmat.2010.07.017<\/a><br \/>[59]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#suppressionofrolloffcharacteristicsofelectroluminescenceathighcurrentdensitiesinorganiclightemittingdiodesbyintroducingreducedcarrierinjectionbarriers' class='gray_back'><strong>[178] Suppression of roll-off characteristics of electroluminescence at high current densities in organic light emitting diodes by introducing reduced carrier injection barriers<\/strong><br \/>Yousuke Setoguchi, Chihaya Adachi<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>108<\/strong>, 64516, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3488883 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.3488883 <\/a><br \/>[54]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#36diarylcarbazolederivativesasahostmaterialinorganicelectrophosphorescentdiodes' class='gray_back'><strong>[177] 3,6-diarylcarbazole derivatives as a host material in organic electrophosphorescent diodes<\/strong><br \/>Kenji Muneuchi, Masaomi Sasaki, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>49<\/strong>, 80208, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.49.080208' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.49.080208<\/a><br \/>[4]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#improvedthermoelectricperformanceoforganicthinfilmelementsutilizingabilayerstructureofpentaceneand2356tetrafluoro7788tetracyanoquinodimethanef4tcnq' class='gray_back'><strong>[176] Improved thermoelectric performance of organic thin-film elements utilizing a bilayer structure of pentacene and 2,3,5,6-tetrafluoro-7,7,8,8-tetracyanoquinodimethane (F<sub>4<\/sub>-TCNQ)<\/strong><br \/>Kentaro Harada, Mao Sumino, Chihaya Adachi, Saburo Tanaka, Koji Miyazaki<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>96<\/strong>, 253304, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3456394' target='_blank'>http:\/\/doi.org\/10.1063\/1.3456394<\/a><br \/>[71]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#insiturealtimespectroscopicellipsometrymeasurementfortheinvestigationofmolecularorientationinorganicamorphousmultilayerstructures' class='gray_back'><strong>[175] In situ real-time spectroscopic ellipsometry measurement for the investigation of molecular orientation in organic amorphous multilayer structures<\/strong><br \/>Daisuke Yokoyama, Chihaya Adachi<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>107<\/strong>, 123512, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3432568' target='_blank'>http:\/\/doi.org\/10.1063\/1.3432568<\/a><br \/>[54]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#emissioncolortuninginambipolarorganicsinglecrystalfieldeffecttransistorsbydyedoping' class='gray_back'><strong>[174] Emission color tuning in ambipolar organic single crystal field-effect transistors by dye-doping<\/strong><br \/>Hajime Nakanotani, Masatoshi Saito, Hiroaki Nakamura, Chihaya Adachi<br \/>\n<i>Adv. Funct. Mat.<\/i>, <strong>20<\/strong>, 1610 - 1615, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1002\/adfm.200902339' target='_blank'>http:\/\/doi.org\/10.1002\/adfm.200902339<\/a><br \/>[74]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photoluminescencecharacteristicsoforganichostmaterialswithwideenergygapsfororganicelectrophosphorescentdevices' class='gray_back'><strong>[173] Photoluminescence characteristics of organic host materials with wide energy gaps for organic electrophosphorescent devices<\/strong><br \/>Ayataka Endo, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>49<\/strong>, 50205, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.49.050205' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.49.050205<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#formationoforganicnanodotswithaminimumdiameterof40nmusingconventionalvacuumvapordeposition' class='gray_back'><strong>[172] Formation of Organic Nanodots with a Minimum Diameter of 40 nm Using Conventional Vacuum Vapor Deposition<\/strong><br \/>Manabu Nakata, Kenji Kawano, Mao Yasumatsu, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Appl. Phys. Exp.<\/i>, <strong>3<\/strong>, 55201, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/APEX.3.055201' target='_blank'>http:\/\/doi.org\/10.1143\/APEX.3.055201<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#exciplexformationsathtlalq3interfaceinorganiclightemittingdiodeinfluenceofelectronholerecombinationzoneandelectricfield' class='gray_back'><strong>[171] Exciplex formations at HTL\/Alq3 interface in organic light-emitting diode: influence of electron-hole recombination zone and electric field<\/strong><br \/>Naoki Matsumoto, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>114<\/strong>, 10, 4652 - 4658, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/jp9121062' target='_blank'>http:\/\/doi.org\/10.1021\/jp9121062<\/a><br \/>[32]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#determinationofmoleculardipoleorientationindopedfluorescentorganicthinfilmsbyphotoluminescencemeasurements' class='gray_back'><strong>[170] Determination of molecular dipole orientation in doped fluorescent organic thin films by photoluminescence measurements<\/strong><br \/>Joerg Frischeisen, Daisuke Yokoyama, Chihaya Adachi, Wolfgang Bruetting<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>96<\/strong>, 73302, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3309705' target='_blank'>http:\/\/doi.org\/10.1063\/1.3309705<\/a><br \/>[182]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#reducedinitialdegradationofbulkheterojunctionorganicsolarcellsbyincorporationofstackedfullereneandlithiumfluorideinterlayers' class='gray_back'><strong>[169] Reduced initial degradation of bulk heterojunction organic solar cells by incorporation of stacked fullerene and lithium fluoride interlayers<\/strong><br \/>Kenji Kawano, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>96<\/strong>, 53307, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3297876' target='_blank'>http:\/\/doi.org\/10.1063\/1.3297876<\/a><br \/>[46]:Number of citation <br \/><a href='http:\/\/www.vjnano.org\/'>Virtual Journal of Nanoscale Science & Technology<\/a>\u306b\u30bb\u30ec\u30af\u30c8\u3055\u308c\u307e\u3057\u305f\u3002(2010.2.22) <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organiclightemittingdiodescontainingmultilayersoforganicsinglecrystals' class='gray_back'><strong>[168] Organic light-emitting diodes containing multilayers of organic single crystals<\/strong><br \/>Hajime Nakanotani, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>96<\/strong>, 53301, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3298558' target='_blank'>http:\/\/doi.org\/10.1063\/1.3298558<\/a><br \/>[51]:Number of citation <br \/><a href='http:\/\/apl.aip.org\/interactive_features\/most_downloaded'><font color='red'>Applied Physics Letters<\/font><\/a>-- February 2010<\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#%e3%83%89%e3%83%8a%e3%83%bc%ef%bc%8f%e3%82%a2%e3%82%af%e3%82%bb%e3%83%97%e3%82%bf%e3%83%bc%e6%9c%89%e6%a9%9f%e8%96%84%e8%86%9c%e7%95%8c%e9%9d%a2%e3%81%ab%e5%bd%a2%e6%88%90%e3%81%95%e3%82%8c%e3%82%8b' class='gray_back'><strong>[167] \u30c9\u30ca\u30fc\uff0f\u30a2\u30af\u30bb\u30d7\u30bf\u30fc\u6709\u6a5f\u8584\u819c\u754c\u9762\u306b\u5f62\u6210\u3055\u308c\u308b\u4e8c\u6b21\u5143\u96fb\u8377\u30b7\u30fc\u30c8\u306e\u30ad\u30e3\u30ea\u30a2\u5206\u96e2\u30fb \u8f38\u9001\u6a5f\u69cb\u306e\u89e3\u660e<\/strong><br \/>\u5165\u6c5f \u66a2, \u5742\u4e0a \u77e5, \u5b89\u9054 \u5343\u6ce2\u77e2<br \/>\n<i>\u96fb\u6c17\u5b66\u4f1a\u8a8c Sec. A<\/i>, <strong>130<\/strong>, 155 - 160, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1541\/ieejfms.130.155' target='_blank'>http:\/\/doi.org\/10.1541\/ieejfms.130.155<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#preparationunderhighhumidityconditionsofnanoporouspolymerfilmwith80nmminimumporesize' class='gray_back'><strong>[166] Preparation under High Humidity Conditions of Nanoporous Polymer Film with 80 nm Minimum Pore Size<\/strong><br \/>Takatoshi Nishio, Makoto Kashiwagi, Koji Miyazaki, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Appl. Phys. Exp.<\/i>, <strong>3<\/strong>, 25201, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/APEX.3.025201' target='_blank'>http:\/\/doi.org\/10.1143\/APEX.3.025201<\/a><br \/>[4]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#orientationcontroloflinearshapedmoleculesinvacuumdepositedorganicamorphousfilmsanditseffectoncarriermobilities' class='gray_back'><strong>[165] Orientation control of linear-shaped molecules in vacuum-deposited organic amorphous films and its effect on carrier mobilities<\/strong><br \/>Daisuke Yokoyama, Yousuke Setoguchi, Akio Sakaguchi, Michio Suzuki, Chihaya Adachi<br \/>\n<i>Adv. Funct. Mat.<\/i>, <strong>20<\/strong>, 386 - 391, 2010<br \/>DOI: <a href='http:\/\/doi.org\/10.1002\/adfm.200901684' target='_blank'>http:\/\/doi.org\/10.1002\/adfm.200901684<\/a><br \/>[150]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2009'>2009<\/h4><div rel='#evaluatingcarrieraccumulationindegradedbulkheterojunctionorganicsolarcellsbyathermallystimulatedcurrenttechnique' class='gray_back'><strong>[164] Evaluating carrier accumulation in degraded bulk heterojunction organic solar cells by a thermally stimulated current technique<\/strong><br \/>Kenji Kawano, Chihaya Adachi<br \/>\n<i>Adv. Funct. Mat.<\/i>, <strong>19<\/strong>, 3934 - 3940, 2009<br \/>DOI: <a href='https:\/\/doi.org\/10.1002\/adfm.200901573' target='_blank'>https:\/\/doi.org\/10.1002\/adfm.200901573<\/a><br \/>[113]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancementofelectrontransportbyhorizontalmolecularorientationofoxadiazoleplanarmoleculesinorganicamorphousfilms' class='gray_back'><strong>[163] Enhancement of electron transport by horizontal molecular orientation of oxadiazole planar molecules in organic amorphous films<\/strong><br \/>Daisuke Yokoyama, Akio Sakaguchi, Michio Suzuki, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>95<\/strong>, 243303, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3274135' target='_blank'>http:\/\/doi.org\/10.1063\/1.3274135<\/a><br \/>[60]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#thermallyactivateddelayedfluorescencefromsn4porphyrincomplexesandtheirapplicationtoorganiclightemittingdiodesanovelmechanismforelectroluminescence' class='gray_back'><strong>[162] Thermally activated delayed fluorescence from Sn4+-porphyrin complexes and their application to organic light emitting diodes - a novel mechanism for electroluminescence<\/strong><br \/>Ayataka Endo, Mai Ogasawara, Atsushi Takahashi, Daisuke Yokoyama, Yoshimine Kato, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>21<\/strong>, 4802 - 4906, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1002\/adma.200900983' target='_blank'>http:\/\/doi.org\/10.1002\/adma.200900983<\/a><br \/>[782]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#dependenceofpolarizationsplittingonmodetuninginmicrocavities' class='gray_back'><strong>[161] Dependence of polarization splitting on mode tuning in microcavities<\/strong><br \/>F. Becker, M. Langner, H. FrAob, V. G. Lyssenko, K. Leo, C. Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>95<\/strong>, 191106, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3263145 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.3263145 <\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#effectofmolecularmorphologyonamplifiedspontaneousemissionofbisstyrylbenzenederivatives' class='gray_back'><strong>[160] Effect of molecular morphology on amplified spontaneous emission of bis-styrylbenzene derivatives<\/strong><br \/>Ryota Kabe, Hajime Nakanotani, Tomo Sakanoue, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Adv. Mater.<\/i>, <strong>40<\/strong>, 4034 - 4038, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1002\/adma.200803588' target='_blank'>http:\/\/doi.org\/10.1002\/adma.200803588<\/a><br \/>[137]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photoluminescencecharacteristicsoftris2phenylquinolineiridiumiiidispersedinaniridiumcomplexhostlayer' class='gray_back'><strong>[159] Photoluminescence characteristics of tris(2-phenylquinoline)iridium(III) dispersed in an iridium complex host layer<\/strong><br \/>Ayataka Endo, Chihaya Adachi<br \/>\n<i>Chem. Phys. Lett.<\/i>, <strong>483<\/strong>, 224 - 226, 2009<br \/>DOI: <a href='https:\/\/doi.org\/10.1016\/j.cplett.2009.10.064' target='_blank'>https:\/\/doi.org\/10.1016\/j.cplett.2009.10.064<\/a><br \/>[26]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#tuningofthresholdvoltagebyinterfacialcarrierdopinginorganicsinglecrystalambipolarlightemittingtransistorsandtheirbrightelectroluminescence' class='gray_back'><strong>[158] Tuning of threshold voltage by interfacial carrier doping in organic single crystal ambipolar light-emitting transistors and their bright electroluminescence<\/strong><br \/>Hajime Nakanotani, Masatoshi Saito, Hiroaki Nakamura, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>95<\/strong>, 103307, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3216047' target='_blank'>http:\/\/doi.org\/10.1063\/1.3216047<\/a><br \/>[52]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#controlofthemolecularorientationofa22bithiophene99dioctylfluorenecopolymerbylaserannealingandsubsequentenhancementofthefetcharacteristics' class='gray_back'><strong>[157] Control of the molecular orientation of a 2,2'-bithiophene-9,9'- dioctylfluorene copolymer by laser-annealing and subsequent enhancement of the FET characteristics<\/strong><br \/>Korefumi Kubota, Takuji Kato, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>95<\/strong>, 703303, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3211125 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.3211125 <\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organicthinfilmsolarcellsusingelectrondonatingperylenetetracarboxylicacidderivatives' class='gray_back'><strong>[156] Organic Thin-Film Solar Cells Using Electron-Donating Perylene Tetracarboxylic Acid Derivatives<\/strong><br \/>Y. Shibano, H. Imahori, C. Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>113<\/strong>, 15454 - 15466, 2009<br \/>DOI: <a href='https:\/\/doi.org\/10.1021\/jp9045726' target='_blank'>https:\/\/doi.org\/10.1021\/jp9045726<\/a><br \/>[32]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#singlemoleculecolorcontrollablelightemittingorganicfieldeffecttransistorsforwhitelightemissionwithhighcolorstability' class='gray_back'><strong>[155] Single molecule color controllable light emitting organic field effect transistors for white light emission with high color stability<\/strong><br \/>Tung-Huei Ke, Robert Gehlhaar, Chih-Hsin Chen, Jiann-T Lin, Chung-Chih Wu, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>95<\/strong>, 63303, 2009<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.3202763' target='_blank'>https:\/\/doi.org\/10.1063\/1.3202763<\/a><br \/>[19]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organiclightemittingdiodewithliquidemittinglayer' class='gray_back'><strong>[154] Organic light-emitting diode with liquid emitting layer<\/strong><br \/>Denghui Xu, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>95<\/strong>, 53304, 2009<br \/>DOI: <a href=' http:\/\/doi.org\/10.1063\/1.3200947' target='_blank'> http:\/\/doi.org\/10.1063\/1.3200947<\/a><br \/>[74]:Number of citation <br \/><a href='apl.aip.org\/dbt\/most_downloaded.jsp?KEY=APPLAB&agg=mdArticles'><font color='red'>Applied Physics Letters<\/font><\/a>--August 2009<br \/>\r\n\u5f15\u304d\u7d9a\u304d September\u3082\u7b2c\uff12\u4f4d\u306b\uff01<br \/>\r\n\u5f53\u8ad6\u6587\u304c<a href='http:\/\/www.physorg.com\/news169466260.htmlPHYSORG.com'><font color='red'>PHYSORG.com<\/font><\/a>\u3067\u7d39\u4ecb\u3055\u308c\u307e\u3057\u305f\u3002 <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlybalancedambipolarmobilitieswithintenseelectroluminescenceinfieldeffecttransistorsbasedonorganicsinglecrystaloligopphenylenevinylenederivatives' class='gray_back'><strong>[153] Highly balanced ambipolar mobilities with intense electroluminescence in field-effect transistors based on organic single crystal oligo(p-phenylenevinylene) derivatives<\/strong><br \/>Hajime Nakanotani, Masatoshi Saito, Hiroaki Nakamura, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>95<\/strong>, 33308, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3184588' target='_blank'>http:\/\/doi.org\/10.1063\/1.3184588<\/a><br \/>[77]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#molecularmodificationof27diphenyl1benzothieno32bbenzothiophenedphbtbtwithdiarylaminosubstituentsfromcrystallineordertoamorphousstateinevaporatedthinfilms' class='gray_back'><strong>[152] Molecular Modification of 2,7-Diphenyl[1]benzothieno[3,2-b]benzothiophene (DPh-BTBT) with Diarylamino Substituents: From Crystalline Order to Amorphous State in Evaporated Thin Films<\/strong><br \/>T. Izawa, H. Mori, Y. Shinmura, M. Iwatani, E. Miyazaki, K. Takimiya, HW. Hung, M. Yahiro, C. Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>38<\/strong>, 420 - 421, 2009<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1246\/cl.2009.420' target='_blank'>http:\/\/dx.doi.org\/10.1246\/cl.2009.420<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowthresholdblueemissionfromfirstorderorganicdfblaserusing27bis4ncarbazolephenylvinyl99spirobifluoreneasactivegainmedium' class='gray_back'><strong>[151] Low threshold blue emission from first-order organic DFB laser using 2,7-bis[4-(N-carbazole)phenylvinyl]-9,9'-spirobifluorene as active gain medium<\/strong><br \/>Masaya Hirade, Hajime Nakanotani, Reiji Hattori, Akihiro Ikeda, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Mol. Cryst. Liq. Cryst.<\/i>, <strong>504<\/strong>, 1 - 8, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1080\/1542100902938928' target='_blank'>http:\/\/doi.org\/10.1080\/1542100902938928<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#chargeseparationandtransportbehaviorofatwodimensionalchargesheetatorganicdonoracceptorheterointerfaces' class='gray_back'><strong>[150] Charge separation and transport behavior of a two-dimensional charge sheet at organic donor-acceptor heterointerfaces<\/strong><br \/>Tomo Sakanoue, Toru Irie, Chihaya Adachi<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>105<\/strong>, 114502, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3137192 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.3137192 <\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencybluelightemittingunipolartransistorincorporatingmultifunctionalelectrodes' class='gray_back'><strong>[149] High efficiency blue light emitting unipolar transistor incorporating multifunctional electrodes<\/strong><br \/>Tung-Huei Ke, Robert Gehlhaar, Chih-Hsin Chen, Jiann-T'suen Lin, Chung-Chih Wu, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>94<\/strong>, 153307, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.3109800' target='_blank'>http:\/\/doi.org\/10.1063\/1.3109800<\/a><br \/>[18]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientdeepblueorganiclightemittingdiodesbasedon99bis4biphenylylfluorenederivatives' class='gray_back'><strong>[148] Efficient deep-blue organic light-emitting diodes based on 9, 9-bis(4-biphenylyl)fluorene derivatives<\/strong><br \/>N. Matsumoto, T. Miyazaki, M. Nishiyama, C. Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>113<\/strong>, 6261 - 6266, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/jp809024h' target='_blank'>http:\/\/doi.org\/10.1021\/jp809024h<\/a><br \/>[49]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#nanoparticlesofadaptivesupramolecularnetworksselfassembledfromnucleotidesandlanthanideions' class='gray_back'><strong>[147] Nanoparticles of adaptive supramolecular networks self-assembled from nucleotides and lanthanide ions<\/strong><br \/>R. Nishiyabu, N. Hashimoto, T. Cho, K. Watanabe, T. Yasunaga, A. Endo, K. Kaneko, T. Niidome, M. Murata, C. Adachi, Y. Katayama, M. Hashizume, N. Kimizuka<br \/>\n<i>J. Am. Chem. Soc.<\/i>, <strong>131<\/strong>, 2151 - 2158, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/ja8058843' target='_blank'>http:\/\/doi.org\/10.1021\/ja8058843<\/a><br \/>[291]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#blueemittingfluorophoresofphenyleneethynylenessubstitutedbydiphenylethenylterminalgroupsfororganiclightemittingdiodes' class='gray_back'><strong>[146] Blue emitting fluorophores of phenyleneethynylenes substituted by diphenylethenyl terminal groups for organic light-emitting diodes<\/strong><br \/>Guoliang Mao, Akihiro Orita, Larysa Fenenko, Masayuki Yahiro, Chihaya Adachi, Junzo Otera<br \/>\n<i>Mat. Chem. Phys.<\/i>, <strong>115<\/strong>, 378 - 384, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.matchemphys.2008.12.015' target='_blank'>http:\/\/doi.org\/10.1016\/j.matchemphys.2008.12.015<\/a><br \/>[39]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#effectofsolventonfabricationofactivelayersinorganicsolarcellsbasedonpoly3hexylthiopheneandfullerenederivatives' class='gray_back'><strong>[145] Effect of solvent on fabrication of active layers in organic solar cells based on poly(3-hexylthiophene) and fullerene derivatives<\/strong><br \/>Kenji Kawano, Jun Sakai, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Sol. Energy Mater. Sol. Cells<\/i>, <strong>93<\/strong>, 514 - 518, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.solmat.2008.11.003' target='_blank'>http:\/\/doi.org\/10.1016\/j.solmat.2008.11.003<\/a><br \/>[86]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#horizontalorientationoflinearshapedorganicmoleculeshavingbulkysubstituentsinneatanddopedvacuumdepositedamorphousfilms' class='gray_back'><strong>[144] Horizontal orientation of linear-shaped organic molecules having bulky substituents in neat and doped vacuum-deposited amorphous films<\/strong><br \/>Daisuke Yokoyama, Akio Sakaguchi, Michio Suzuki, Chihaya Adachi<br \/>\n<i>ORG ELECTRON<\/i>, <strong>10<\/strong>, 127 - 137, 2009<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.orgel.2008.10.010' target='_blank'>http:\/\/doi.org\/10.1016\/j.orgel.2008.10.010<\/a><br \/>[195]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2008'>2008<\/h4><div rel='#horizontalmolecularorientationinvacuumdepositedorganicamorphousfilmsofholeandelectrontransportmaterials' class='gray_back'><strong>[143] Horizontal molecular orientation in vacuum-deposited organic amorphous films of hole and electron transport materials<\/strong><br \/>Daisuke Yokoyama, Akio Sakaguchi, Michio Suzuki, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>93<\/strong>, 173302, 2008<br \/>DOI: <a href='https:\/\/doi.org\/10.1063\/1.2996258' target='_blank'>https:\/\/doi.org\/10.1063\/1.2996258<\/a><br \/>[135]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancingholetransportsandgeneratingholetrapsbydopingorganicholetransportlayerswithptypemoleculesof2356tetrafluoro7788tetracyanoquinodimethane' class='gray_back'><strong>[142] Enhancing hole transports and generating hole traps by doping organic hole-transport layers with p-type molecules of 2,3,5,6-tetrafluoro-7,7,8,8-tetracyanoquinodimethane<\/strong><br \/>Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Thin Solid Films<\/i>, <strong>517<\/strong>, 874 - 877, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.tsf.2008.07.008' target='_blank'>http:\/\/doi.org\/10.1016\/j.tsf.2008.07.008<\/a><br \/>[19]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photosensitizingpropertiesoftheporphyceneimmobilizedinsolgelderivedsilicacoatingfilms' class='gray_back'><strong>[141] Photosensitizing Properties of the Porphycene Immobilized in Sol-Gel Derived Silica Coating Films<\/strong><br \/>Hisashi Shimakoshi, Tatsushi Baba, Yusuke Iseki, Ayataka Endo, Chihaya Adachi, Midori Watanabe, Yoshio Hisaeda<br \/>\n<i>Tetrahdron Lett.<\/i>, <strong>49<\/strong>, 6198 - 6201, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.tetlet.2008.08.003' target='_blank'>http:\/\/doi.org\/10.1016\/j.tetlet.2008.08.003<\/a><br \/>[20]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#rolloffcharacteristicsofelectroluminescenceefficiencyoforganicblueelectrophosphorescencediodes' class='gray_back'><strong>[140] Roll-Off Characteristics of Electroluminescence Efficiency of Organic Blue Electrophosphorescence Diodes<\/strong><br \/>Kyung Soo Son, Masayuki Yahiro, Toshiro Imai, Hiroki Yoshizaki, Junichi Nishide, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>47<\/strong>, 7363 - 7365, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.47.7363' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.47.7363<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowdrivingvoltageorganiclightemittingdiodeusingphenanthreneoligomersaselectrontransportlayer' class='gray_back'><strong>[139] Low driving voltage organic light emitting diode using phenanthrene oligomers as electron transport layer<\/strong><br \/>Hsiao-Wen Hung, Norimasa Yokoyama, Chihaya Adachi<br \/>\n<i>Thin Solid Films<\/i>, <strong>516<\/strong>, 8717 - 8720, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.tsf.2008.05.047' target='_blank'>http:\/\/doi.org\/10.1016\/j.tsf.2008.05.047<\/a><br \/>[11]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#bluelightemittingambipolarfieldeffecttransistorsusinganorganicsinglecrystalof14bis4methylstyrylbenzene' class='gray_back'><strong>[138] Blue-Light-Emitting Ambipolar Field-Effect Transistors Using an Organic Single Crystal of 1,4-Bis(4-methylstyryl)benzene<\/strong><br \/>Hajime Nakanotani,  Ryota Kabe, Masayuki Yahiro, Taishi Takenobu, Yoshihiro Iwasa, Chihaya Adachi<br \/>\n<i>Appl. Phys. Exp.<\/i>, <strong>1<\/strong>, 91801, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/APEX.1.091801' target='_blank'>http:\/\/doi.org\/10.1143\/APEX.1.091801<\/a><br \/>[59]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#finitedifferencetimedomainanalysisofthelightextractionefficiencyinorganiclightemittingfieldeffecttransistors' class='gray_back'><strong>[137] Finite difference time domain analysis of the light extraction efficiency in organic light-emitting field-effect transistors<\/strong><br \/>Robert Gehlhaar, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>104<\/strong>, 33116, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2968132 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.2968132 <\/a><br \/>[11]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#measurementofphotoluminescenceefficiencyofiriiiphenylpyridinederivativesinsolutionandsolidstatefilms' class='gray_back'><strong>[136] Measurement of photoluminescence efficiency of Ir(III) phenylpyridine derivatives in solution and solid-state films<\/strong><br \/>Ayataka Endo, Kengo Suzuki, Toshitada Yoshihara, Seiji Tobita, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Chem. Phys. Lett.<\/i>, <strong>460<\/strong>, 155 - 157, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.cplett.2008.05.064' target='_blank'>http:\/\/doi.org\/10.1016\/j.cplett.2008.05.064<\/a><br \/>[133]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#analyzingbipolarcarriertransportcharacteristicsofdiarylaminosubstitutedheterocycliccompoundsinorganiclightemittingdiodesbyprobingelectroluminescencespectra' class='gray_back'><strong>[135] Analyzing Bipolar Carrier Transport Characteristics of Diarylamino-Substituted Heterocyclic Compounds in Organic Light-Emitting Diodes by Probing Electroluminescence Spectra<\/strong><br \/>Kyung Soo Son, Masayuki Yahiro, Toshiro Imai, Hiroki Yoshizaki, Chihaya Adachi<br \/>\n<i>Chem. Mat.<\/i>, <strong>20<\/strong>, 4439 - 4446, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/cm8004985' target='_blank'>http:\/\/doi.org\/10.1021\/cm8004985<\/a><br \/>[70]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photophysicalandphotosensitizingpropertiesofbrominatedporphycenes' class='gray_back'><strong>[134] Photophysical and Photosensitizing Properties of Brominated Porphycenes<\/strong><br \/>Hisashi Shimakoshi, Tatsushi Baba, Yusuke Iseki, Isao Aritome, Ayataka Endo, Chihaya Adachi, Yoshio Hisaeda<br \/>\n<i>Chem. Comm.<\/i>, 2882 - 2884, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1039\/B802730G' target='_blank'>http:\/\/doi.org\/10.1039\/B802730G<\/a><br \/>[42]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#spectrallynarrowemissionatcutoffwavelengthfromedgeofopticallyandelectricallypumpedorganicanisotropicfilms' class='gray_back'><strong>[133] Spectrally Narrow Emission at Cutoff Wavelength from Edge of Optically and Electrically Pumped Organic Anisotropic Films<\/strong><br \/>Daisuke Yokoyama, Masato Moriwake, Chihaya Adachi<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>103<\/strong>, 123104, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2942401' target='_blank'>http:\/\/doi.org\/10.1063\/1.2942401<\/a><br \/>[43]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientorganiclightemittingdiodesdopedwiththiophenephenylenecooligomer' class='gray_back'><strong>[132] Highly efficient organic light-emitting diodes doped with thiophene\/phenylene co-oligomer<\/strong><br \/>Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Chem. Mat.<\/i>, <strong>20<\/strong>, 2881 - 2883, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/cm800098f' target='_blank'>http:\/\/doi.org\/10.1021\/cm800098f<\/a><br \/>[13]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#exciplexformationsbetweentris8hydoxyquinolatealuminumandholetransportmaterialsandtheirphotoluminescenceandelectroluminescencecharacteristics' class='gray_back'><strong>[131] Exciplex Formations between Tris(8-hydoxyquinolate)aluminum and Hole Transport Materials and Their Photoluminescence and Electroluminescence Characteristics<\/strong><br \/>Naoki Matsumoto, Masakazu Nishiyama, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>112<\/strong>, 7735 - 7741, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/jp800443r' target='_blank'>http:\/\/doi.org\/10.1021\/jp800443r<\/a><br \/>[60]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electricalcharacteristicsofsinglecomponentambipolarorganicfieldeffecttransistorsandeffectsofairexposureonthem' class='gray_back'><strong>[130] Electrical characteristics of single-component ambipolar organic field-effect transistors and effects of air exposure on them<\/strong><br \/>Tomo Sakanoue, Masayuki Yahiro, Chihaya Adachi, Kazuo Takimiya, Akio Toshimitsu<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>103<\/strong>, 94509, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2919738 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.2919738 <\/a><br \/>[41]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#%e7%99%ba%e5%85%89%e6%80%a7%e6%9c%89%e6%a9%9f%e3%83%88%e3%83%a9%e3%83%b3%e3%82%b8%e3%82%b9%e3%82%bf%e7%94%a8%e6%9d%90%e6%96%99%e3%81%ae%e5%88%86%e5%ad%90%e8%a8%ad%e8%a8%88%e3%81%a8%e3%83%87%e3%83%90' class='gray_back'><strong>[129] \u767a\u5149\u6027\u6709\u6a5f\u30c8\u30e9\u30f3\u30b8\u30b9\u30bf\u7528\u6750\u6599\u306e\u5206\u5b50\u8a2d\u8a08\u3068\u30c7\u30d0\u30a4\u30b9\u7279\u6027<\/strong><br \/>\u516b\u5c0b \u6b63\u5e78, \u5742\u4e0a \u77e5, \u5185\u751f\u8535 \u5e83\u5e78, \u5c0f\u5c71\u7530 \u5d07\u4eba, \u5e74\u5149 \u662d\u592b, \u5b89\u9054 \u5343\u6ce2\u77e2<br \/>\n<i>\u6709\u6a5f\u5408\u6210\u5316\u5b66\u5354\u4f1a\u8a8c<\/i>, <strong>66<\/strong>, 493, 2008<br \/>DOI: <a href='https:\/\/doi.org\/10.5059\/yukigoseikyokaishi.66.493' target='_blank'>https:\/\/doi.org\/10.5059\/yukigoseikyokaishi.66.493<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#suppressionofexcitonannihilationathighcurrentdensitiesinorganiclightemittingdioderesultingfromenergylevelalignmentsofcarriertransportlayers' class='gray_back'><strong>[128] Suppression of exciton annihilation at high current densities in organic light-emitting diode resulting from energy-level alignments of carrier transport layers<\/strong><br \/>Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>92<\/strong>, 63306, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2844891' target='_blank'>http:\/\/doi.org\/10.1063\/1.2844891<\/a><br \/>[35]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#photophysicalandphotocatalyticpropertiesofbetasulfonatoporphycenes' class='gray_back'><strong>[127] Photophysical and photocatalytic properties of beta-sulfonatoporphycenes<\/strong><br \/>Tatsushi Baba, Hisashi Shimakoshi, Ayataka Endo A, Chihaya Adachi, Yoshio Hisaeda<br \/>\n<i>Chem. Lett.<\/i>, <strong>37<\/strong>, 264 - 265, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1246\/cl.2008.264' target='_blank'>http:\/\/doi.org\/10.1246\/cl.2008.264<\/a><br \/>[20]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#temperatureindependentelectrontunnelinginjectionintris8hydroxyquinolinealuminumthinfilmfromhighworkfunctiongoldelectrodetoshinorimatsushima' class='gray_back'><strong>[126] Temperature-independent electron tunneling injection in tris (8-hydroxyquinoline) aluminum thin film from high-work-function gold electrode<\/strong><br \/>Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Thin Solid Films<\/i>, <strong>516<\/strong>, 5069 - 5074, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.tsf.2008.02.012' target='_blank'>http:\/\/doi.org\/10.1016\/j.tsf.2008.02.012<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#alignmentfreeprocessforasymmetriccontactelectrodesandtheirapplicationinlightemittingorganicfieldeffecttransistors' class='gray_back'><strong>[125] Alignment-free process for asymmetric contact electrodes and their application in light-emitting organic field-effect transistors<\/strong><br \/>Tomo Sakanoue, Masayuki Yahiro, Chihaya Adachi, Yoshiaki Oku, Noriyuki Shimoji, Takayoshi Takahashi, Akio Toshimitsu<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>92<\/strong>, 53505, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2839895' target='_blank'>http:\/\/doi.org\/10.1063\/1.2839895<\/a><br \/>[19]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#evaluatingoriginofelectrontrapsintris8hydroxyquinolinealuminumthinfilmsusingathermallystimulatedcurrenttechnique' class='gray_back'><strong>[124] Evaluating origin of electron traps in tris(8-hydroxyquinoline) aluminum thin films using a thermally stimulated current technique<\/strong><br \/>Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>47<\/strong>, 1748 - 1752, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.47.1748' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.47.1748<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#enhancedholeinjectionandtransportinmolybdenumdioxidedopedorganicholetransportinglayers' class='gray_back'><strong>[123] Enhanced hole injection and transport in molybdenum-dioxide-doped organic hole-transporting layers<\/strong><br \/>Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>103<\/strong>, 34501, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2836972 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.2836972 <\/a><br \/>[62]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highcurrentdensityinlightemittingtransistorsoforganicsinglecrystals' class='gray_back'><strong>[122] High Current Density in Light-Emitting Transistors of Organic Single Crystals<\/strong><br \/>Taishi Takenobu, Satria Zulkarnaen Bisri, Tetsuo Takahashi, Masayuki Yahiro, Chihaya Adachi, Yoshihiro Iwasa<br \/>\n<i>Phys. Rev. Lett.<\/i>, <strong>100<\/strong>, 66601, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1103\/PhysRevLett.100.066601' target='_blank'>http:\/\/doi.org\/10.1103\/PhysRevLett.100.066601<\/a><br \/>[197]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#ahighmobilityambipolarfieldeffecttransistorusinga26diphenylbenzo12b45b%e2%80%99diselenophenefullerenedoublelayer' class='gray_back'><strong>[121] A high mobility ambipolar field effect transistor using a 2,6-diphenylbenzo[1,2-b:4,5-b\u2019] diselenophene\/fullerene double layer<\/strong><br \/>Shohei Kinoshita, Tomo Sakanoue, Masayuki Yahiro, Kazuo Takimiya, Hideaki Ebata, Masaaki Ikeda, Hirokazu Kuwabara, Chihaya Adachi<br \/>\n<i>Solid State Comm.<\/i>, <strong>145<\/strong>, 114 - 117, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.ssc.2007.10.017' target='_blank'>http:\/\/doi.org\/10.1016\/j.ssc.2007.10.017<\/a><br \/>[9]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#brightelectroluminescencefromsinglelayerorganiclightemittingdiodescomprisinganambipolarcarriertransportlayerofphenyldipyrenylphosphineoxide' class='gray_back'><strong>[120] Bright electroluminescence from single-layer organic light-emitting diodes comprising an ambipolar carrier transport layer of phenyldipyrenylphosphine oxide<\/strong><br \/>Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Thin Solid Films<\/i>, <strong>516<\/strong>, 4288 - 4292, 2008<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.tsf.2007.09.038' target='_blank'>http:\/\/doi.org\/10.1016\/j.tsf.2007.09.038<\/a><br \/>[10]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2007'>2007<\/h4><div rel='#observationofextremelyhighcurrentdensitiesonorderofmacm2incopperphthalocyaninethinfilmdeviceswithsubmicronactiveareas' class='gray_back'><strong>[119] Observation of Extremely High Current Densities on Order of MA\/cm2 in Copper Phthalocyanine Thin-Film Devices with Submicron Active Areas<\/strong><br \/>Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys. Part II<\/i>, <strong>46<\/strong>, L1179 - L1181, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.46.L1179' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.46.L1179<\/a><br \/>[17]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#14bis22diphenylethenylbenzeneasanefficientemittingmaterialfororganiclightemittingdiodes' class='gray_back'><strong>[118] 1,4-bis(2,2-diphenylethenyl)benzene as an efficient emitting material for organic light emitting diodes<\/strong><br \/>Larysa Fenenko, Guoliang Mao, Akihiro Orita, Junzo Otera, Petro Smertenko, Georgi Svechnikov, Jun-ici Nishide, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>Semiconductor Physics, Quantum Electronics & Optoelectronics<\/i>, <strong>10<\/strong>, 77 - 82, 2007<br \/>DOI: <a href='https:\/\/doi.org\/10.15407\/spqeo10.01.077' target='_blank'>https:\/\/doi.org\/10.15407\/spqeo10.01.077<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#featuresofconductivityandelectroluminescenceofnewpoly99dioctylfluorenyl27diylendcappedwithpolyhedraloligomericsilsesquioxanes' class='gray_back'><strong>[117] Features of conductivity and electroluminescence of new poly (9,9-dioctylfluorenyl-2,7-diyl) - End capped with polyhedral oligomeric silsesquioxanes<\/strong><br \/>L. Fenenko, C. Adachi, Y. Nakanishi, P. Smertenko, S. Svechnikov<br \/>\n<i>Mol. Cryst. Liq. Cryst.<\/i>, <strong>467<\/strong>, 303 - 309, 2007<br \/>DOI: <a href='https:\/\/doi.org\/10.1080\/15421400701224678' target='_blank'>https:\/\/doi.org\/10.1080\/15421400701224678<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#spectrallynarrowemissionatcutoffwavelengthfromedgeofelectricallypumpedorganiclightemittingdiodes' class='gray_back'><strong>[116] Spectrally Narrow Emission at Cutoff Wavelength from Edge of Electrically Pumped Organic Light-Emitting Diodes<\/strong><br \/>Daisuke Yokoyama, Hajime Nakanotani, Yousuke Setoguchi, Masato Moriwake, Dai Ohnishi, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>46<\/strong>, L826 - 829, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.46.L826' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.46.L826<\/a><br \/>[20]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#estimationofelectrontrapsincarbon60fieldeffecttransistorsbyathermallystimulatedcurrenttechnique' class='gray_back'><strong>[115] Estimation of electron traps in carbon-60 field-effect transistors by a thermally stimulated current technique<\/strong><br \/>Toshinori Matsushima, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>91<\/strong>, 103505, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2779240' target='_blank'>http:\/\/doi.org\/10.1063\/1.2779240<\/a><br \/>[52]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highcurrentinjectionandtransportonorderofkacm2inorganiclightemittingdiodeshavingmixedorganicorganicheterojunctioninterfaces' class='gray_back'><strong>[114] High-current Injection and Transport on Order of kA\/ cm2 in Organic Light-emitting Diodes Having Mixed Organic\/ Organic Heterojunction Interfaces<\/strong><br \/>Toshinori Matsushima, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys. Part II<\/i>, <strong>46<\/strong>, L861 - L863, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.46.L861' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.46.L861<\/a><br \/>[24]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#alternatingcopolyfluorenevinyleswithpolynucleararomaticmoietiessynthesisphotophysicsandelectroluminescence' class='gray_back'><strong>[113] Alternating Copolyfluorenevinyles with Polynuclear Aromatic Moieties: Synthesis, Photophysics, and Electroluminescence<\/strong><br \/>John A. Mikroyannidis, Larysa Fenenko, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>J. Poly. Sci., A: Poly. Chem.<\/i>, <strong>45<\/strong>, 4661 - 4670, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1002\/pola.22213' target='_blank'>http:\/\/doi.org\/10.1002\/pola.22213<\/a><br \/>[20]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#extremelylowthresholdamplifiedspontaneousemissionof99%e2%80%99spirobifluorenederivativesandelectroluminescencefromfieldeffecttransistorstructure' class='gray_back'><strong>[112] Extremely Low-Threshold Amplified Spontaneous Emission of 9,9\u2019-Spirobifluorene Derivatives and Electroluminescence from Field-Effect Transistor Structure<\/strong><br \/>Hajime Nakanotani, Seiji Akiyama, Dai Ohnishi, Masato Moriwake, Masayuki Yahiro, Toshitada Yoshihara, Seiji Tobita, Chihaya Adachi<br \/>\n<i>Adv. Funct. Mater.<\/i>, <strong>17<\/strong>, 2328 - 2335, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1002\/adfm.200700069' target='_blank'>http:\/\/doi.org\/10.1002\/adfm.200700069<\/a><br \/>[121]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#verylowamplifiedspontaneousemissionthresholdandelectroluminescencecharacteristicsof11diphenylsubstitutedfluorenederivatives' class='gray_back'><strong>[111] Very low amplified spontaneous emission threshold and electroluminescence characteristics of 1,1'-diphenyl substituted fluorene derivatives<\/strong><br \/>Hajime Nakanotani, Naoki Matsumoto, Hiroyuki Uchiuzou, Masakazu Nishiyama, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Opt. Mater.<\/i>, <strong>30<\/strong>, 630 - 636, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.optmat.2007.02.045' target='_blank'>http:\/\/doi.org\/10.1016\/j.optmat.2007.02.045<\/a><br \/>[10]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#blueorganicelectrophosphorescencediodesusingdiarylaminosubstitutedheterocycliccompoundsashostmaterial' class='gray_back'><strong>[110] Blue Organic Electrophosphorescence Diodes using Diarylamino-substituted Heterocyclic Compounds as Host Material<\/strong><br \/>Kyung Soo Son, Masayuki Yahiro, Toshiro Imai, Hiroki Yoshizaki, Chihaya Adachi<br \/>\n<i>Journal of Photopolymer Science and Technology<\/i>, <strong>20<\/strong>, 47 - 51, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.2494\/photopolymer.20.47' target='_blank'>http:\/\/doi.org\/10.2494\/photopolymer.20.47<\/a><br \/>[25]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#ambipolarfieldeffecttransistorbasedonorganicinorganichybridstructure' class='gray_back'><strong>[109] Ambipolar field-effect transistor based on organic-inorganic hybrid structure<\/strong><br \/>Hajime Nakanotani, Masayuki Yahiro, Koki Yano, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>90<\/strong>, 262104, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2752023' target='_blank'>http:\/\/doi.org\/10.1063\/1.2752023<\/a><br \/>[48]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#analysisofcarriertrapsincontinuouslyoperated44%e2%80%99bisn1naphthylnphenylaminobiphenyltris8hydroxyquinolinealuminumbasedorganiclightemittingdiodesbythermallystimula' class='gray_back'><strong>[108] Analysis of Carrier Traps in Continuously Operated 4,4\u2019-bis[N-(1-naphthyl)-N-phenyl-amino]- biphenyl \/tris (8-hydroxyquinoline)aluminum-Based Organic Light-Emitting Diodes by Thermally Stimulated Current Measurement<\/strong><br \/>Makoto Nakahara, Masahiro Minagawa, Takahito Oyamada, Toyoyasu Tadokoro, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys. Part II<\/i>, <strong>46<\/strong>, L636 - 639, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.46.L636' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.46.L636<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#spectrallynarrowemissionfromorganicfilmsundercontinuouswaveexcitation' class='gray_back'><strong>[107] Spectrally narrow emission from organic films under continuous-wave excitation<\/strong><br \/>H. Nakanotani, C. Adachi, S. Watanabe, R. Katoh<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>90<\/strong>, 231109, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2746958' target='_blank'>http:\/\/doi.org\/10.1063\/1.2746958<\/a><br \/>[40]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#ambipolarfieldeffecttransistorofhighphotoluminescentmaterialtetraphenylpyrenetppysinglecrystal' class='gray_back'><strong>[106] Ambipolar Field-Effect Transistor of High Photoluminescent Material Tetraphenylpyrene (TPPy) Single Crystal<\/strong><br \/>Satria Zulkarnaen Bisri, Tetsuo Takahashi, Taishi Takenobu, Masayuki Yahiro, Chihaya Adachi, Yoshihiro Iwasa<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>46<\/strong>, L596 - L598, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.46.L596' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.46.L596<\/a><br \/>[33]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electricalpropertiesof14bis4phenylethynylphenylethynylbenzeneanditsapplicationfororganiclightemittingdiodes' class='gray_back'><strong>[105] Electrical properties of 1,4-bis(4-(phenylethynyl)phenylethynyl)benzene and its application for organic light emitting diodes<\/strong><br \/>Larysa Fenenko, Guang Shao, Akihiro Orita, Masayuki Yahiro, Junzo Otera, Sergei Svechnikov, Chihaya Adachi<br \/>\n<i>Chem. Commun.<\/i>, <strong>22<\/strong>, 2278 - 2280, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1039\/b700466d' target='_blank'>http:\/\/doi.org\/10.1039\/b700466d<\/a><br \/>[39]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#opticalpropertiesofoligo99diarylfluorenederivativesinthinfilmsandtheirapplicationfororganiclightemittingfieldeffecttransistors' class='gray_back'><strong>[104] Optical Properties of Oligo(9,9-diarylfluorene) Derivatives in Thin Films and Their Application for Organic Light-Emitting Field-Effect Transistors<\/strong><br \/>Takahito Oyamada, Chih-Hao Chang, Teng-Chih Chao, Fu-Chuan Fang, Chung-Chih Wu, Ken-Tsung Wong, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>J. Phys. Chem. C<\/i>, <strong>111<\/strong>, 108 - 115, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/jp0654056' target='_blank'>http:\/\/doi.org\/10.1021\/jp0654056<\/a><br \/>[53]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#materialdesignofholetransportmaterialscapableofthickfilmformationinorganiclightemittingdiodes' class='gray_back'><strong>[103] Material design of hole transport materials capable of thick-film formation in organic light emitting diodes<\/strong><br \/>M. Aonuma, T. Oyamada, T. Miki, H. Sasabe, C. Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>90<\/strong>, 183503, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2733627' target='_blank'>http:\/\/doi.org\/10.1063\/1.2733627<\/a><br \/>[238]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#ambipolarlightemittingorganicfieldeffecttransistorsusingawidebandgapblueemittingsmallmolecule' class='gray_back'><strong>[102] Ambipolar light-emitting organic field-effect transistors using a wide-band-gap blue-emitting small molecule<\/strong><br \/>Tomo Sakanoue, Masayuki Yahiro, Chihaya Adachi, Hiroyuki Uchiuzou, Takayoshi Takahashi, Akio Toshimitsu<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>90<\/strong>, 171118, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2734389' target='_blank'>http:\/\/doi.org\/10.1063\/1.2734389<\/a><br \/>[47]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyefficientandstableredphosphorescentorganiclightemittingdeviceusingbis22benzothiazoylphenolatozinciiashostmaterial' class='gray_back'><strong>[101] Highly efficient and stable red phosphorescent organic light-emitting device using bis[2-(2-benzothiazoyl)phenolato]zinc(II) as host material<\/strong><br \/>Hiroshi Kanno, Kaori Ishikawa, Yoshitaka Nishio, Ayataka Endo, Chihaya Adachi, Kenichi Shibata<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>90<\/strong>, 123509, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2643908' target='_blank'>http:\/\/doi.org\/10.1063\/1.2643908<\/a><br \/>[209]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#toplightharvestingorganicsolarcellusingultrathinagmgaglayerasanode' class='gray_back'><strong>[100] Top Light-Harvesting Organic Solar Cell Using Ultrathin Ag\/MgAg Layer as Anode<\/strong><br \/>Takahito Oyamada, Yuhsuke Sugawara, Yuhki Terao, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>46<\/strong>, 1734 - 1735, 2007<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1143\/JJAP.46.1734' target='_blank'>http:\/\/dx.doi.org\/10.1143\/JJAP.46.1734<\/a><br \/>[37]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#correlationofholemobilityexcitondiffusionlengthandsolarcellcharacteristicsinphthalocyaninefullereneorganicsolarcells' class='gray_back'><strong>[99] Correlation of hole mobility, exciton diffusion length, and solar cell characteristics in phthalocyanine\/fullerene organic solar cells<\/strong><br \/>Yuhki Terao, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>90<\/strong>, 103515, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2711525' target='_blank'>http:\/\/doi.org\/10.1063\/1.2711525<\/a><br \/>[182]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#influenceofheattreatmentonindiumtinoxideanodesandcopperphthalocyanineholeinjectionlayersinorganiclightemittingdiodes' class='gray_back'><strong>[98] Influence of heat treatment on indium-tin-oxide anodes and copper phthalocyanine hole injection layers in organic light-emitting diodes<\/strong><br \/>L. Fenenko, C. Adachi<br \/>\n<i>Thin Solid Films<\/i>, <strong>515<\/strong>, 4812 - 4818, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.tsf.2006.11.116' target='_blank'>http:\/\/doi.org\/10.1016\/j.tsf.2006.11.116<\/a><br \/>[20]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#chargecarrierinjectioncharacteristicsatorganicorganicheterojunctioninterfacesinorganiclightemittingdiodes' class='gray_back'><strong>[97] Charge-carrier injection characteristics at organic\/organic heterojunction interfaces in organic light-emitting diodes<\/strong><br \/>Toshinori Matsushima, Kenichi Goushi, Chihaya Adachi<br \/>\n<i>Chem. Phys. Lett.<\/i>, <strong>435<\/strong>, 327 - 330, 2007<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.cplett.2007.01.010' target='_blank'>http:\/\/doi.org\/10.1016\/j.cplett.2007.01.010<\/a><br \/>[39]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2006'>2006<\/h4><div rel='#extremelylowvoltageorganiclightemittingdiodeswithpdopedalphasexithiopheneholetransportandndopedphenyldipyrenylphosphineoxideelectrontransportlayers' class='gray_back'><strong>[96] Extremely low voltage organic light-emitting diodes with p-doped alpha-sexithiophene hole transport and n-doped phenyldipyrenylphosphine oxide electron transport layers<\/strong><br \/>T. Matsushima, C. Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>89<\/strong>, 253506, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2410236 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.2410236 <\/a><br \/>[76]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#opticalandelectricalpropertiesofbis4phenylethynylphenylethynesandtheirapplicationtoorganicfieldeffecttransistors' class='gray_back'><strong>[95] Optical and Electrical Properties of Bis(4-(phenylethynyl)phenyl)ethynes and Their Application to Organic Field-Effect Transistors<\/strong><br \/>Takahito Oyamada, Guang Shao, Hiroyuki Uchiuzou, Hajime Nakanotani, Akihiro Orita, Junzo Otera, Masayuki Yahiro, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys. Part II<\/i>, <strong>45<\/strong>, L1331 - 1333, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.45.L1331' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.45.L1331<\/a><br \/>[13]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#novelbluegreenishelectroluminescentpolyfluorenevinylenealtdibenzothiophenevinylenesandtheirmodelcompounds' class='gray_back'><strong>[94] Novel Blue-Greenish Electroluminescent Poly(fluorenevinylene-alt-dibenzothiophenevinylene)s and Their Model Compounds<\/strong><br \/>John A. Mikroyannidis, Helen A. Moshopoulou, John A. Anastasopoulos, Minas M. Stylianakis, Larysa Fenenko, Chihaya Adachi<br \/>\n<i>J. Poly. Sci., A: Poly. Chem.<\/i>, <strong>44<\/strong>, 6790 - 6800, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1002\/pola.21753' target='_blank'>http:\/\/doi.org\/10.1002\/pola.21753<\/a><br \/>[30]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#novelelectrontransportingcarbazolylphenylquinolinesforphosphorescentorganiclightemittingdiodes' class='gray_back'><strong>[93] Novel Electron-Transporting Carbazolylphenylquinolines for Phosphorescent Organic Light- Emitting Diodes<\/strong><br \/>Atsushi Takahashi, Ayataka Endo, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>45<\/strong>, 9228 - 9230, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.45.9228' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.45.9228<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#synthesisandphotophysicalcharacteristicsof27fluorenevinylenebasedtrimersandtheirelectroluminescence' class='gray_back'><strong>[92] Synthesis and Photophysical Characteristics of 2,7-Fluorenevinylene-Based Trimers and Their Electroluminescence<\/strong><br \/>J. A. Mikroyannidis, L. Fenenko, C. Adachi<br \/>\n<i>J. Phys. Chem. B<\/i>, <strong>110<\/strong>, 20317 - 26, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/jp0631477' target='_blank'>http:\/\/doi.org\/10.1021\/jp0631477<\/a><br \/>[58]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highfieldeffectmobilityinanorganicthinfilmtransistorwithasolidstatepolymerizedpolydiacetylenefilmasanactivelayer' class='gray_back'><strong>[91] High Field-Effect Mobility in an Organic Thin-Film Transistor with a Solid-State Polymerized Polydiacetylene Film as an Active Layer<\/strong><br \/>Jun-ichi Nishide, Takahito Oyamada, Seiji Akiyama, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>Adv. Mat.<\/i>, <strong>18<\/strong>, 3120 - 3124, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1002\/adma.200601419' target='_blank'>http:\/\/doi.org\/10.1002\/adma.200601419<\/a><br \/>[42]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#%e3%82%b7%e3%83%ad%e3%82%ad%e3%82%b5%e3%83%b3%e5%8c%96%e5%90%88%e7%89%a9%e3%82%92%e3%83%9b%e3%82%b9%e3%83%88%e6%9d%90%e6%96%99%e3%81%a8%e3%81%97%e3%81%a6%e7%94%a8%e3%81%84%e3%81%9f%e9%9d%92%e8%89%b2' class='gray_back'><strong>[90] \u30b7\u30ed\u30ad\u30b5\u30f3\u5316\u5408\u7269\u3092\u30db\u30b9\u30c8\u6750\u6599\u3068\u3057\u3066\u7528\u3044\u305f\u9752\u8272\u6709\u6a5fEL \u30c7\u30d0\u30a4\u30b9\u306e\u7d20\u5b50\u7279\u6027<\/strong><br \/>\u9060\u85e4 \u793c\u9686, J. Brooks, J. J. Brown, \u96c0\u90e8 \u535a\u4e4b, \u5b89\u9054 \u5343\u6ce2\u77e2<br \/>\n<i>\u9ad8\u5206\u5b50\u8ad6\u6587\u96c6<\/i>, <strong>63<\/strong>, 686 - 690, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1295\/koron.63.686' target='_blank'>http:\/\/doi.org\/10.1295\/koron.63.686<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#%e5%8f%af%e6%ba%b6%e6%80%a7%e3%83%88%e3%83%aa%e3%82%b9%ef%bc%888%e3%82%ad%e3%83%8e%e3%83%aa%e3%83%8e%e3%83%ac%e3%83%bc%e3%83%88%ef%bc%89%e3%82%a2%e3%83%ab%e3%83%9f%e3%83%8b%e3%82%a6%e3%83%a0%e5%90%ab' class='gray_back'><strong>[89] \u53ef\u6eb6\u6027\u30c8\u30ea\u30b9\uff088-\u30ad\u30ce\u30ea\u30ce\u30ec\u30fc\u30c8\uff09\u30a2\u30eb\u30df\u30cb\u30a6\u30e0\u542b\u6709\u30c7\u30f3\u30c9\u30ea\u30de\u30fc\u306e\u767a\u5149\u7279\u6027<\/strong><br \/>\u53e4\u9152 \u614e\u4e5f, \u4e38\u5c71 \u7d14\u592b, \u96c0\u90e8 \u535a\u4e4b, \u5b89\u9054 \u5343\u6ce2\u77e2<br \/>\n<i>\u9ad8\u5206\u5b50\u8ad6\u6587\u96c6<\/i>, <strong>63<\/strong>, 675 - 680, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1295\/koron.63.675' target='_blank'>http:\/\/doi.org\/10.1295\/koron.63.675<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#tptpt%e3%81%a8ntcda%e5%85%b1%e8%92%b8%e7%9d%80%e8%86%9c%e3%82%92%e7%94%a8%e3%81%84%e3%81%9f%e7%99%ba%e5%85%89%e5%9e%8b%e6%9c%89%e6%a9%9f%e9%9b%bb%e7%95%8c%e5%8a%b9%e6%9e%9c%e3%83%88%e3%83%a9%e3%83%b3' class='gray_back'><strong>[88] TPTPT\u3068NTCDA\u5171\u84b8\u7740\u819c\u3092\u7528\u3044\u305f\u767a\u5149\u578b\u6709\u6a5f\u96fb\u754c\u52b9\u679c\u30c8\u30e9\u30f3\u30b8\u30b9\u30bf\u306b\u304a\u3051\u308b2\u6975\u6027\u7279\u6027<\/strong><br \/>\u5185\u751f\u8535 \u5e83\u5e78, \u5c0f\u5c71\u7530 \u5d07\u4eba, \u96c0\u90e8 \u535a\u4e4b, \u5b89\u9054 \u5343\u6ce2\u77e2<br \/>\n<i>\u96fb\u6c17\u5b66\u4f1a\u8ad6\u6587\u8a8c\uff23<\/i>, <strong>126<\/strong>, 1107 - 1111, 2006<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1541\/ieejeiss.126.1107' target='_blank'>http:\/\/dx.doi.org\/10.1541\/ieejeiss.126.1107<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#spinrelaxationprocessofexcitedtripletstatesofirppy3' class='gray_back'><strong>[87] Spin-relaxation Process of Excited Triplet States of Ir(ppy)3<\/strong><br \/>Kenichi Goushi, Jason Brooks, Julie. J. Brown, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>J. Photopolym. Sci. Technol.<\/i>, <strong>19<\/strong>, 181 - 186, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.2494\/photopolymer.19.181' target='_blank'>http:\/\/doi.org\/10.2494\/photopolymer.19.181<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#preparationofmicropatternedorganiclightemittingdiodesbyselforganization' class='gray_back'><strong>[86] Preparation of Micropatterned Organic Light Emitting Diodes by Self-Organization<\/strong><br \/>O. Karthaus, C. Adachi, S. Arakaki, A. Endo, T. Wada<br \/>\n<i>Mol. Cryst. Liq. Cryst.<\/i>, <strong>444<\/strong>, 87 - 94, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1080\/15421400500365227' target='_blank'>http:\/\/doi.org\/10.1080\/15421400500365227<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#estimationofcarrierrecombinationandelectroluminescenceemissionregionsinorganiclightemittingfieldeffecttransistorsusinglocaldopingmethod' class='gray_back'><strong>[85] Estimation of carrier recombination and electroluminescence emission regions in organic light-emitting field-effect transistors using local doping method<\/strong><br \/>Takahito Oyamada, Hiroyuki Sasabe, Yoshiaki Oku, Noriyuki Shimoji, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>88<\/strong>, 93514, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2181629' target='_blank'>http:\/\/doi.org\/10.1063\/1.2181629<\/a><br \/>[23]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#unusualphotoluminescencecharacteristicsoftetraphenylpyrenetppyinvariousaggregatedmorphologies' class='gray_back'><strong>[84] Unusual photoluminescence characteristics of tetraphenylpyrene (TPPy) in various aggregated morphologies<\/strong><br \/>Takahito Oyamada, Seiji Akiyama, Masayuki Yahiro, Mari Saigou, Motoo Shiro, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>Chem. Phys. Lett.<\/i>, <strong>421<\/strong>, 295 - 299, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/j.cplett.2005.12.102' target='_blank'>http:\/\/doi.org\/10.1016\/j.cplett.2005.12.102<\/a><br \/>[38]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowdamageindiumtinoxideformationonorganiclayersusinguniquecylindricalsputteringmoduleandapplicationintransparentorganiclightemittingdiodes' class='gray_back'><strong>[83] Low-Damage Indium Tin Oxide Formation on Organic Layers Using Unique Cylindrical Sputtering Module and Application in Transparent Organic Light-Emitting Diodes<\/strong><br \/>Hidetoshi Yamamoto, Takahito Oyamada, William Hale, Shoichi Aoshima, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>Jpn. J. Appl. Phys. Part II<\/i>, <strong>45<\/strong>, L213 - 216, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.45.L213' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.45.L213<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#carrierinjectionandtransportcharacteristicsofcopperphthalocyaninethinfilmsunderlowtoextremelyhighcurrentdensities' class='gray_back'><strong>[82] Carrier injection and transport characteristics of copper phthalocyanine thin films under low to extremely high current densities<\/strong><br \/>Toshinori Matsushima, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>88<\/strong>, 33508, 2006<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2165197 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.2165197 <\/a><br \/>[42]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#intermolecularinteractionandaconcentrationquenchingmechanismofphosphorescentiriiicomplexesinasolidfilm' class='gray_back'><strong>[81] Intermolecular Interaction and a Concentration-Quenching Mechanism of Phosphorescent Ir(III) Complexes in a Solid Film<\/strong><br \/>Yuichiro Kawamura, Jason Brooks, Julie J. Brown, H. Sasabe, C. Adachi<br \/>\n<i>Phys. Rev. Lett.<\/i>, <strong>96<\/strong>, 17404, 2006<br \/>DOI: <a href='https:\/\/doi.org\/10.1103\/PhysRevLett.96.017404' target='_blank'>https:\/\/doi.org\/10.1103\/PhysRevLett.96.017404<\/a><br \/>[320]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2005'>2005<\/h4><div rel='#bluetoredelectroluminescencefromorganiclightemittingfieldeffecttransistorusingvariousorganicsemiconductormaterials' class='gray_back'><strong>[80] Blue-to-red electroluminescence from organic light-emitting field-effect transistor using various organic semiconductor materials<\/strong><br \/>Takahito Oyamada, Hiroyuki Uchiuzo, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>J. SID<\/i>, <strong>13\/10<\/strong>, 15, 869 - 873, 2005<br \/>DOI: <a href='http:\/\/doi.org\/10.1889\/1.2121072' target='_blank'>http:\/\/doi.org\/10.1889\/1.2121072<\/a><br \/>[15]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lateralorganiclightemittingdiodewithfieldeffecttransistorcharacteristics' class='gray_back'><strong>[79] Lateral organic light-emitting diode with field-effect transistor characteristics<\/strong><br \/>Takahito Oyamada, Hiroyuki Uchiuzo, Seiji Akiyama, Yoshiaki Oku, Noriyuki Shimoji, Kazumi Matsushige, Hiroyuki Sasabe, Chihaya Adachi<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>98<\/strong>, 74506, 2005<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.2060932 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.2060932 <\/a><br \/>[123]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#phosphorescencedecaymechanismofirppy3inasolidmatrix' class='gray_back'><strong>[78] Phosphorescence Decay Mechanism of Ir(ppy)3 in a Solid Matrix<\/strong><br \/>K. Goushi, H. Sasabe, C. Adachi<br \/>\n<i>J. Photopolym. Sci. Technol.<\/i>, <strong>18<\/strong>, 47 - 50, 2005<br \/>DOI: <a href='http:\/\/doi.org\/10.2494\/photopolymer.18.47' target='_blank'>http:\/\/doi.org\/10.2494\/photopolymer.18.47<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#injectionandtransportofhighcurrentdensityover1000acm2inorganiclightemittingdiodesunderpulseexcitation' class='gray_back'><strong>[77] Injection and Transport of High Current Density over 1000 A\/cm2 in Organic Light Emitting Diodes under Pulse Excitation<\/strong><br \/>H. Nakanotani, T. Oyamada, Y. Kawamura, H. Sasabe, C. Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>44<\/strong>, 3659 - 3662, 2005<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.44.3659' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.44.3659<\/a><br \/>[44]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#singletsingletandsingletheatannihilationsinfluorescencebasedorganiclightemittingdiodesundersteadystatehighcurrentdensity' class='gray_back'><strong>[76] Singlet-singlet and singlet-heat annihilations in fluorescence-based organic light-emitting diodes under steady-state high current density<\/strong><br \/>H. Nakanotani, H. Sasabe, C. Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>86<\/strong>, 213506, 2005<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1939075' target='_blank'>http:\/\/doi.org\/10.1063\/1.1939075<\/a><br \/>[92]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electroluminescenceof24bis42%e2%80%99thiopheneylphenylthiopheneinorganiclightemittingfieldeffecttransistors' class='gray_back'><strong>[75] Electroluminescence of 2,4-bis(4-(2\u2019-thiophene-yl)phenyl)thiophene in organic light-emitting field-effect transistors<\/strong><br \/>T. Oyamada, H. Sasabe, C. Adachi, S. Okuyama, N. Shimoji, K. Matsushige<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>86<\/strong>, 93505, 2005<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1870105' target='_blank'>http:\/\/doi.org\/10.1063\/1.1870105<\/a><br \/>[61]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#100fluorescenceefficiencyof44%e2%80%99bisncarbazolestyrylbiphenylinasolidfilmandtheverylowamplifiedspontaneousemissionthreshold' class='gray_back'><strong>[74] 100% fluorescence efficiency of 4,4\u2019-bis[(N-carbazole)styryl]biphenyl in a solid film and the very low amplified spontaneous emission threshold<\/strong><br \/>T. Aimono, Y. Kawamura, K. Goushi, H. Yamamoto, H. Sasabe, C. Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>86<\/strong>, 71110, 2005<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1867555' target='_blank'>http:\/\/doi.org\/10.1063\/1.1867555<\/a><br \/>[141]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#extremelyhighdensitycarrierinjectionandtransportover12000acm2intoorganicthinfilms' class='gray_back'><strong>[73] Extremely-high-density carrier injection and transport over 12000A\/cm2 into organic thin films<\/strong><br \/>H. Yamamoto, H. Kasajima, W. Yokoyama, H. Sasabe, C. Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>86<\/strong>, 83502, 2005<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1866230' target='_blank'>http:\/\/doi.org\/10.1063\/1.1866230<\/a><br \/>[76]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#100phosphorescencequantumefficiencyofiriiicomplexesinorganicsemiconductorfilms' class='gray_back'><strong>[72] 100% phosphorescence quantum efficiency of Ir(III) complexes in organic semiconductor films<\/strong><br \/>Y. Kawamura, K. Goushi, J. Brooks, J. J. Brown, H. Sasabe, C. Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>86<\/strong>, 71104, 2005<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1862777' target='_blank'>http:\/\/doi.org\/10.1063\/1.1862777<\/a><br \/>[631]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#extremelylowvoltagedrivingoforganiclightemittingdiodeswithacsdopedphenyldipyrenylphosphineoxidelayerasanelectroninjectionlayer' class='gray_back'><strong>[71] Extremely low-voltage driving of organic light-emitting diodes with a Cs-doped phenyldipyrenylphosphine oxide layer as an electron-injection layer<\/strong><br \/>T. Oyamada, H. Sasabe, C. Adachi, S. Murase, T. Tominaga, C. Maeda<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>86<\/strong>, 33503, 2005<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1852707' target='_blank'>http:\/\/doi.org\/10.1063\/1.1852707<\/a><br \/>[91]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencycarrierinjectioncharacteristicsofdixanthenederivativesinorganiclightemittingdiodes' class='gray_back'><strong>[70] High-Efficiency Carrier Injection Characteristics of Dixanthene Derivatives in Organic Light- Emitting Diodes<\/strong><br \/>M. Yoshida, T. Tsuchida, T. Kurata, M. Ikeda, H. Sasabe, C. Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>44<\/strong>, 410 - 411, 2005<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.44.410' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.44.410<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2004'>2004<\/h4><div rel='#simpleaccuratesystemformeasuringabsolutephotoluminescencequantumefficiencyinorganicsolidstatethinfilms' class='gray_back'><strong>[69] Simple Accurate System for Measuring Absolute Photoluminescence Quantum Efficiency in Organic Solid-State Thin Films<\/strong><br \/>Y. Kawamura, H. Sasabe, C. Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>43<\/strong>, 7729 - 7730, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.43.7729' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.43.7729<\/a><br \/>[235]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#%e8%a4%87%e6%95%b0%e3%81%ae%e3%83%aa%e3%83%b3%e5%85%89%e7%99%ba%e5%85%89%e5%b1%a4%e3%82%92%e5%90%ab%e6%9c%89%e3%81%99%e3%82%8b%e7%99%bd%e8%89%b2%e7%99%ba%e5%85%89%e3%83%87%e3%83%90%e3%82%a4%e3%82%b9' class='gray_back'><strong>[68] \u8907\u6570\u306e\u30ea\u30f3\u5149\u767a\u5149\u5c64\u3092\u542b\u6709\u3059\u308b\u767d\u8272\u767a\u5149\u30c7\u30d0\u30a4\u30b9<\/strong><br \/>\u5b89\u85e4 \u66a2\u5b8f, \u6cb3\u6751 \u7950\u4e00\u90ce, Julie. J. Brown, \u96c0\u90e8 \u535a\u4e4b, \u5b89\u9054 \u5343\u6ce2\u77e2<br \/>\n<i>\u96fb\u6c17\u5b66\u4f1a\u8ad6\u6587\u8a8c\uff21<\/i>, <strong>124<\/strong>, 1053 - 1058, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1541\/ieejfms.124.1053' target='_blank'>http:\/\/doi.org\/10.1541\/ieejfms.124.1053<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electroluminescenceasaprobeforelucidatingelectricalconductivityinadeoxyribonucleicacidcetyltrimethylammoniumlipidcomplexlayer' class='gray_back'><strong>[67] Electroluminescence as a probe for elucidating electrical conductivity in a deoxyribonucleic acid-cetyltrimethylammonium lipid complex layer<\/strong><br \/>K. Hirata, T. Oyamada, T. Imai, H. Sasabe, C. Adachi, T. Koyama<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>85<\/strong>, 1627 - 1629, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1780600' target='_blank'>http:\/\/doi.org\/10.1063\/1.1780600<\/a><br \/>[30]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientelectroninjectioncharacteristicsoftriazinederivativesfortransparentoledstoleds' class='gray_back'><strong>[66] Efficient Electron Injection Characteristics of Triazine Derivatives for Transparent OLEDs (TOLEDs)<\/strong><br \/>T. Oyamada, H. Yoshizaki, H. Sasabe, C. Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>33<\/strong>, 1034 - 1035, 2004<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1246\/cl.2004.1034' target='_blank'>http:\/\/dx.doi.org\/10.1246\/cl.2004.1034<\/a><br \/>[32]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#formationofeuropiumchelatecomplexesbyvacuumcodepositionandtheirapplicationinorganiclightemittingdiodes' class='gray_back'><strong>[65] Formation of Europium Chelate Complexes by Vacuum Co-Deposition and Their Application in Organic Light-Emitting Diodes<\/strong><br \/>T. Oyamada, Y. Kawamura, T. Koyama, H. Sasabe, C. Adachi<br \/>\n<i>Adv. Mat.<\/i>, <strong>16<\/strong>, 1082, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1002\/adma.200400090' target='_blank'>http:\/\/doi.org\/10.1002\/adma.200400090<\/a><br \/>[86]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#synthesisandcharacterizationofhexakis4pyridylethynylbenzeneandhexakis5pyrimidylethynylbenzene' class='gray_back'><strong>[64] Synthesis and characterization of hexakis(4-pyridylethynyl)benzene and hexakis(5-pyrimidylethynyl) benzene<\/strong><br \/>M. Ohkita, C. Adachi, M. Kawano, T. Suzuki<br \/>\n<i>Heterocycles<\/i>, <strong>63<\/strong>, 1537 - 1540, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.3987\/COM-04-10073' target='_blank'>http:\/\/doi.org\/10.3987\/COM-04-10073<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#unusualphosphorescencecharacteristicsofirppy3inasolidmatrixatlowtemperatures' class='gray_back'><strong>[63] Unusual Phosphorescence Characteristics of Ir(ppy)3 in a Solid Matrix at Low Temperatures<\/strong><br \/>K. Goushi, Y. Kawamura, H. Sasabe, C. Adachi<br \/>\n<i>Jpn. J. Appl. Phys. Part II<\/i>, <strong>43<\/strong>, L937 - 939, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.43.L937' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.43.L937<\/a><br \/>[52]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#%e3%83%95%e3%82%a9%e3%83%88%e3%83%aa%e3%82%bd%e3%82%b0%e3%83%a9%e3%83%95%e3%82%a3%e3%83%bc%e6%b3%95%e3%81%ab%e3%82%88%e3%82%8bmgau%e5%90%88%e9%87%91%e9%9b%bb%e6%a5%b5%e3%81%ae%e5%bd%a2%e6%88%90' class='gray_back'><strong>[62] \u30d5\u30a9\u30c8\u30ea\u30bd\u30b0\u30e9\u30d5\u30a3\u30fc\u6cd5\u306b\u3088\u308bMgAu\u5408\u91d1\u96fb\u6975\u306e\u5f62\u6210\u3068\u6709\u6a5fLED\uff65\u6709\u6a5fFET\u3078\u306e\u9069\u7528<\/strong><br \/>\u5c0f\u5c71\u7530 \u5d07\u4eba, \u96c0\u90e8 \u535a\u4e4b, \u5b89\u9054 \u5343\u6ce2\u77e2<br \/>\n<i>\u96fb\u6c17\u5b66\u4f1a\u8ad6\u6587\u8a8cC<\/i>, <strong>124<\/strong>, 1219 - 1223, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1541\/ieejeiss.124.1219' target='_blank'>http:\/\/doi.org\/10.1541\/ieejeiss.124.1219<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'>Formation of MgAu Alloy Cathode by Photolithography and Its Application to Organic Light-Emitting Diodes and Organic Field Effect Transistors\r\n<a href=\"http:\/\/dx.doi.org\/10.1002\/eej.20153\">Electrical Engineering in Japan, 152, 37-42 (2005)<\/a>\r\nT. Oyamada, H. Sasabe and C. Adachi\r\n\uff08\u540c\u8ad6\u6587\u306e\u82f1\u8a9e\u8a33\uff09\r\n<\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#tripletexcitonconfinementandunconfinementbyadjacentholetransportlayers' class='gray_back'><strong>[61] Triplet exciton confinement and unconfinement by adjacent hole-transport layers<\/strong><br \/>K. Goushi, R. Kwong, J. J. Brown, H. Sasabe, C. Adachi<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>95<\/strong>, 7798 - 7802, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1751232' target='_blank'>http:\/\/doi.org\/10.1063\/1.1751232<\/a><br \/>[281]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electroluminescencefromselforganized%e2%80%9cmicrodomes%e2%80%9d' class='gray_back'><strong>[60] Electroluminescence from self-organized \u201cmicrodomes\u201d<\/strong><br \/>O. Karthaus, C. Adachi, S. Kurimura, T. Oyamada<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>84<\/strong>, 4696 - 4698, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1760592' target='_blank'>http:\/\/doi.org\/10.1063\/1.1760592<\/a><br \/>[33]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#%ef%bc%92%e3%81%a4%e3%81%ae%e3%83%aa%e3%83%b3%e5%85%89%e6%80%a7%e3%83%89%e3%83%bc%e3%83%91%e3%83%b3%e3%83%88%e3%82%92%e5%90%ab%e6%9c%89%e3%81%99%e3%82%8b%e7%99%bd%e8%89%b2%e3%83%aa%e3%83%b3%e5%85%89' class='gray_back'><strong>[59] \uff12\u3064\u306e\u30ea\u30f3\u5149\u6027\u30c9\u30fc\u30d1\u30f3\u30c8\u3092\u542b\u6709\u3059\u308b\u767d\u8272\u30ea\u30f3\u5149\u30c7\u30d0\u30a4\u30b9\u306e\u767a\u5149\u6a5f\u69cb<\/strong><br \/>\u4f50\u85e4 \u559c\u90ce, \u5408\u5fd7 \u61b2\u4e00, \u96c0\u90e8 \u535a\u4e4b, Julie J. Brown, \u6589\u85e4 \u6b63\u7f8e, \u5b89\u9054 \u5343\u6ce2\u77e2<br \/>\n<i>\u96fb\u6c17\u5b66\u4f1a\u8ad6\u6587\u8a8c\uff21<\/i>, <strong>124<\/strong>, 414 - 420, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1541\/ieejfms.124.414' target='_blank'>http:\/\/doi.org\/10.1541\/ieejfms.124.414<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#ultravioletamplifiedspontaneousemissionfromthinfilmsof44%e2%80%99bis9carbazolyl22%e2%80%99biphenylandthederivatives' class='gray_back'><strong>[58] Ultraviolet amplified spontaneous emission from thin films of 4,4\u2019-bis(9-carbazolyl)-2,2\u2019- biphenyl and the derivatives<\/strong><br \/>Y. Kawamura, H. Yamamoto, K. Goushi, H. Sasabe, H. Yoshizaki, C. Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>84<\/strong>, 2724 - 2726, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1695091' target='_blank'>http:\/\/doi.org\/10.1063\/1.1695091<\/a><br \/>[37]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organometalliccomplexesasholetransportingmaterialsinorganiclightemittingdiodes' class='gray_back'><strong>[57] Organometallic Complexes as Hole-Transporting Materials in Organic Light-Emitting Diodes<\/strong><br \/>X. F. Ren, B. D. Alleyne, P. I. Djurovich, C. Adachi, I. Tsyba, R. Bau, M. E. Thompson<br \/>\n<i>Inorg. Chem.<\/i>, <strong>43<\/strong>, 1697 - 1707, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/ic035183f' target='_blank'>http:\/\/doi.org\/10.1021\/ic035183f<\/a><br \/>[38]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencyorganicelectrophosphorescentdiodesusing135triazineelectrontransportmaterials' class='gray_back'><strong>[56] High-Efficiency Organic Electrophosphorescent Diodes Using 1, 3, 5-Triazine Electron Transport Materials<\/strong><br \/>H. Inomata, K. Goushi, T. Masuko, T. Konno, T. Imai, H. Sasabe, J. J. Brown, C. Adachi<br \/>\n<i>Chem. Mat.<\/i>, <strong>16<\/strong>, 1285 - 1291, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/cm034689t' target='_blank'>http:\/\/doi.org\/10.1021\/cm034689t<\/a><br \/>[225]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#amplifiedspontaneousemissionunderopticalpumpingfromanorganicsemiconductorlaserstructureequippedwithtransparentcarrierinjectionelectrodes' class='gray_back'><strong>[55] Amplified spontaneous emission under optical pumping from an organic semiconductor laser structure equipped with transparent carrier injection electrodes<\/strong><br \/>H. Yamamoto, T. Oyamada, H. Sasabe, C. Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>84<\/strong>, 1401 - 1403, 2004<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1646730' target='_blank'>http:\/\/doi.org\/10.1063\/1.1646730<\/a><br \/>[67]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2003'>2003<\/h4><div rel='#anovelclassofphotoandelectroactivepolymerscontainingoxadiazoleandaminemoietiesinasidechain' class='gray_back'><strong>[54] A Novel Class of Photo- and Electroactive Polymers Containing Oxadiazole and Amine Moieties in a Side Chain<\/strong><br \/>H. Mochizuki, T. Hasui, M. Kawamoto, T. Ikeda, C. Adachi, Y. Taniguchi, Y. Shirota<br \/>\n<i>Macromolecules<\/i>, <strong>36<\/strong>, 3457 - 3464, 2003<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/ma021406u' target='_blank'>http:\/\/doi.org\/10.1021\/ma021406u<\/a><br \/>[58]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#932' class='gray_back'><strong>[53] Efficient Electron Injection Mechanism in Organic Light-Emitting Diodes Using an Ultra Thin Layer of Low-Work-Function Metals<\/strong><br \/>W. Yokoyama, H. Sasabe, C. Adachi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>42<\/strong>, L1535 - L1538, 2003<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.42.L1535' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.42.L1535<\/a><br \/>[52]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#carrierinjectionandtransportofsteadystatehighcurrentdensityexceeding1000acm2inorganicthinfilms' class='gray_back'><strong>[52] Carrier Injection and Transport of Steady-State High Current Density Exceeding 1000A\/cm2 in Organic Thin Films<\/strong><br \/>W. Yokoyama, H. Sasabe, C. Adachi<br \/>\n<i>Jpn. J. Appl. Phys., (Exp. Lett.)<\/i>, <strong>42<\/strong>, L1353 - 1355, 2003<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.42.L1353' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.42.L1353<\/a><br \/>[17]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#switchingeffectincutcnqchargetransfercomplexthinfilmsbyvacuumcodeposition' class='gray_back'><strong>[51] Switching effect in Cu:TCNQ charge transfer-complex thin films by vacuum codeposition<\/strong><br \/>T. Oyamada, H. Tanaka, K. Matsushige, H. Sasabe, C. Adachi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>83<\/strong>, 1252 - 1254, 2003<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1600848' target='_blank'>http:\/\/doi.org\/10.1063\/1.1600848<\/a><br \/>[211]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientelectroninjectioncharacteristicsoftetra2pyridinylpyrazinetppinorganiclightemittingdiodes' class='gray_back'><strong>[50] Efficient Electron Injection Characteristics of Tetra-2-pyridinylpyrazine (TPP) in Organic Light Emitting Diodes<\/strong><br \/>T. Oyamada, C. Maeda, H. Sasabe, C. Adachi<br \/>\n<i>Chem. Lett.<\/i>, <strong>32<\/strong>, 388 - 389, 2003<br \/>DOI: <a href='http:\/\/doi.org\/10.1246\/cl.2003.388' target='_blank'>http:\/\/doi.org\/10.1246\/cl.2003.388<\/a><br \/>[7]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2002'>2002<\/h4><div rel='#highefficiencysingledopantwhiteelectrophosphorescentlightemittingdiodes' class='gray_back'><strong>[49] High efficiency single dopant white electrophosphorescent light emitting diodes<\/strong><br \/>V. Adamovich, J. Brooks, A. Tamayo, A. M. Alexander, P. I. Djurovich, B. W. D\u2019Andrade, C. Adachi, S. R. Forrest, M. E. Thompson<br \/>\n<i>New J. Chem.<\/i>, <strong>26<\/strong>, 1171 - 1178, 2002<br \/>DOI: <a href='http:\/\/doi.org\/10.1039\/b204301g' target='_blank'>http:\/\/doi.org\/10.1039\/b204301g<\/a><br \/>[525]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#18naphthalimidesinphosphorescentorganicledstheinterplaybetweendopantexciplexandhostemission' class='gray_back'><strong>[48] 1,8-Naphthalimides in Phosphorescent Organic LEDs : The Interplay between Dopant, Exciplex, and Host Emission<\/strong><br \/>D. Kolosov, V. Adamovich, P. Djurovich, M. E. Thompson, C. Adachi<br \/>\n<i>J. Am. Chem. Soc.<\/i>, <strong>124<\/strong>, 9945 - 9954, 2002<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/ja0263588' target='_blank'>http:\/\/doi.org\/10.1021\/ja0263588<\/a><br \/>[260]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#architecturesforefficientelectrophosphorescentorganiclightemittingdevices' class='gray_back'><strong>[47] Architectures for Efficient Electrophosphorescent Organic Light-Emitting Devices<\/strong><br \/>C. Adachi, M. E. Thompson, S. R. Forrest<br \/>\n<i>IEEE, J. Selected Topics Quan. Elec.<\/i>, <strong>8<\/strong>, 372 - 377, 2002<br \/>DOI: <a href='http:\/\/doi.org\/10.1109\/2944.999192' target='_blank'>http:\/\/doi.org\/10.1109\/2944.999192<\/a><br \/>[57]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2001'>2001<\/h4><div rel='#electroluminescentbehaviorofoxadiazolederivativesinliquidcrystallinemedia' class='gray_back'><strong>[46] Electroluminescent Behavior of Oxadiazole Derivatives in Liquid-Crystalline Media<\/strong><br \/>H. Mochizuki, T. Hasui, O. Tsutsumi, A. Kanazawa, T. Shiono, T. Ikeda, C. Adachi, Y, Taniguchi, Y. Shirota<br \/>\n<i>Mol. Cryst. Liq. Cryst.<\/i>, <strong>365<\/strong>, 1085 - 1094, 2001<br \/>DOI: <a href='http:\/\/doi.org\/10.1080\/10587250108025289' target='_blank'>http:\/\/doi.org\/10.1080\/10587250108025289<\/a><br \/>[6]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#energyrelaysystemsforefficientorganiclightemittingdevicesinfluenceofformationofexciplexasrevealedbyphotoexcitation' class='gray_back'><strong>[45] Energy Relay Systems for Efficient Organic Light-Emitting Devices: Influence of Formation of Exciplex as Revealed by Photoexcitation<\/strong><br \/>R. Naitou, M. Ichikawa, T. Suzuki, C. Adachi, T. Koyama, Y. Taniguchi<br \/>\n<i>Mol. Cryst. Liq. Cryst.<\/i>, <strong>370<\/strong>, 31 - 34, 2001<br \/>DOI: <a href='https:\/\/doi.org\/10.1080\/10587250108030032' target='_blank'>https:\/\/doi.org\/10.1080\/10587250108030032<\/a><br \/>[3]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#nearly100internalphosphorescenceefficiencyinanorganiclightemittingdevice' class='gray_back'><strong>[44] Nearly 100% internal phosphorescence efficiency in an organic light-emitting device<\/strong><br \/>C. Adachi, M. A. Baldo, M. E. Thompson, S. R. Forrest<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>90<\/strong>, 5048 - 5051, 2001<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1063\/1.1409582' target='_blank'>http:\/\/dx.doi.org\/10.1063\/1.1409582<\/a><br \/>[3380]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencyyellowdoubledopedorganiclightemittingdevicesbasedonphosphorsensitizedfluorescence' class='gray_back'><strong>[43] High-efficiency yellow double-doped organic light-emitting devices based on phosphor-sensitized fluorescence<\/strong><br \/>B. W. D\u2019Andrade, M. A. Baldo, C. Adachi, J. Brooks, M. E. Thompson, S. R. Forrest<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>79<\/strong>, 1045 - 1047, 2001<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1388159' target='_blank'>http:\/\/doi.org\/10.1063\/1.1388159<\/a><br \/>[229]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#endothermicenergytransferamechanismforgeneratingveryefficienthighenergyphosphorescentemissioninorganicmaterials' class='gray_back'><strong>[42] Endothermic energy transfer: A mechanism for generating very efficient high-energy phosphorescent emission in organic materials<\/strong><br \/>C. Adachi, Raymond C. Kwong, P. Djurovich, V. Adamovich, M. A. Baldo, M. E. Thompson, S. R. Forrest<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>79<\/strong>, 2082 - 2084, 2001<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1400076' target='_blank'>http:\/\/doi.org\/10.1063\/1.1400076<\/a><br \/>[1039]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highlyphosphorescentbiscyclometalatediridiumcomplexessynthesisphotophysicalcharacterizationanduseinorganiclightemittingdiodes' class='gray_back'><strong>[41] Highly Phosphorescent Bis-Cyclometalated Iridium Complexes: Synthesis, Photophysical Characterization, and Use in Organic Light Emitting Diodes<\/strong><br \/>S. Lamansky, P. Djurovich, D. Murphy, F. Abdel-Razzaq, Hae-Eun Lee, C. Adachi, P. E. Burrows, S. R. Forrest, M. E. Thompson<br \/>\n<i>J. Am. Chem. Soc.<\/i>, <strong>123<\/strong>, 4304 - 4312, 2001<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/ja003693s' target='_blank'>http:\/\/doi.org\/10.1021\/ja003693s<\/a><br \/>[2744]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencyredelectrophosphorescencedevices' class='gray_back'><strong>[40] High-efficiency red electrophosphorescence devices<\/strong><br \/>C. Adachi, M. A. Baldo, S. R. Forrest, S. Lamansky, M. E. Thompson, R. C. Kwong<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>78<\/strong>, 1622 - 1624, 2001<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1355007' target='_blank'>http:\/\/doi.org\/10.1063\/1.1355007<\/a><br \/>[999]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#efficientelectrophosphorescenceusingadopedambipolarconductivemolecularorganicthinfilm' class='gray_back'><strong>[39] Efficient electrophosphorescence using a doped ambipolar conductive molecular organic thin film<\/strong><br \/>C. Adachi, R. Kwong, S. R. Forrest<br \/>\n<i>Organic Electronics<\/i>, <strong>2<\/strong>, 37 - 43, 2001<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/S1566-1199(01)00010-6' target='_blank'>http:\/\/doi.org\/10.1016\/S1566-1199(01)00010-6<\/a><br \/>[208]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-2000'>2000<\/h4><div rel='#emissionbehaviorofmolecularlydopedelectroluminescentdeviceusingliquidcrystallinematrix' class='gray_back'><strong>[38] Emission behavior of molecularly doped electroluminescent device using liquid-crystalline matrix<\/strong><br \/>H. Mochizuki, T. Hasui, T. Shiono, T. Ikeda, C. Adachi, Y. Taniguchi, Y. Shirota<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>77<\/strong>, 1587 - 1589, 2000<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1309026' target='_blank'>http:\/\/doi.org\/10.1063\/1.1309026<\/a><br \/>[28]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#novelliquidcrystallineandamorphousmaterialscontainingoxadiazoleandaminemoietiesforelectroluminescentdevices' class='gray_back'><strong>[37] Novel liquid-crystalline and amorphous materials containing oxadiazole and amine moieties for electroluminescent devices<\/strong><br \/>H. Mochizuki, T. Hasui, M. Kawamoto, T. Shiono, T. Ikeda, C. Adachi, Y. Taniguchi, Y. Shirota<br \/>\n<i>Chem. Commun.<\/i>, 1923 - 1924, 2000<br \/>DOI: <a href='http:\/\/doi.org\/10.1039\/b005550f' target='_blank'>http:\/\/doi.org\/10.1039\/b005550f<\/a><br \/>[69]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencyorganicelectrophosphorescentdeviceswithtris2phenylpyridineiridiumdopedintoelectrontransportingmaterials' class='gray_back'><strong>[36] High-efficiency organic electrophosphorescent devices with tris(2-phenylpyridine)iridium doped into electron-transporting materials<\/strong><br \/>C. Adachi, M. A. Baldo, S. R. Forrest, M. E. Thompson<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>77<\/strong>, 904 - 906, 2000<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.1306639' target='_blank'>http:\/\/doi.org\/10.1063\/1.1306639<\/a><br \/>[1095]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#highefficiencytransparentorganiclightemittingdevices' class='gray_back'><strong>[35] High-efficiency transparent organic light-emitting devices<\/strong><br \/>G. Parthasarathy, C. Adachi, P. E. Burrows, S. R. Forrest<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>76<\/strong>, 2128 - 2130, 2000<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.126275' target='_blank'>http:\/\/doi.org\/10.1063\/1.126275<\/a><br \/>[157]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#transientanalysisoforganicelectrophosphorescence%e2%85%b1transientanalysisoftriplettripletannihilation' class='gray_back'><strong>[34] Transient analysis of organic electrophosphorescence. \u2161. Transient analysis of triplet-triplet annihilation<\/strong><br \/>M. A. Baldo, C. Adachi, S. R. Forrest<br \/>\n<i>Phys. Rev.<\/i>, <strong>B 62<\/strong>, 10967 - 10977, 2000<br \/>DOI: <a href='http:\/\/dx.doi.org\/10.1103\/PhysRevB.62.10967' target='_blank'>http:\/\/dx.doi.org\/10.1103\/PhysRevB.62.10967<\/a><br \/>[1304]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electroluminescencemechanismsinorganiclightemittingdevicesemployingaeuropiumchelatedopedinawideenergygapbipolarconductinghost' class='gray_back'><strong>[33] Electroluminescence mechanisms in organic light emitting devices employing a europium chelate doped in a wide energy gap bipolar conducting host<\/strong><br \/>C. Adachi, M. A. Baldo, S. R. Forrest<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>87<\/strong>, 8049 - 8055, 2000<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.373496' target='_blank'>http:\/\/doi.org\/10.1063\/1.373496<\/a><br \/>[464]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#lowthresholdgainnarrowingcharacteristicsoffluorescentstyrylbenzenederivativesasaguestmoleculeinanorganicthinfilmopticalwaveguide' class='gray_back'><strong>[32] Low Threshold Gain-Narrowing Characteristics of Fluorescent Styrylbenzene Derivatives as a Guest Molecule in an Organic Thin-Film Optical Waveguide<\/strong><br \/>Y. Okumura, M. Nagawa, C. Adachi, M. Satsuki, S. Suga, T. Koyama, Y. Taniguchi<br \/>\n<i>Chem. Lett.<\/i>, <strong>7<\/strong>, 754 - 755, 2000<br \/>DOI: <a href='http:\/\/doi.org\/10.1246\/cl.2000.754' target='_blank'>http:\/\/doi.org\/10.1246\/cl.2000.754<\/a><br \/>[17]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-1999'>1999<\/h4><div rel='#electroluminescenceoforganiclightemittingdiodeswithathickholetransportlayercomposedofatriphenylaminebasedpolymerdopedwithanantimoniumcompound' class='gray_back'><strong>[31] Electroluminescence of organic light emitting diodes with a thick hole transport layer composed of a triphenylamine based polymer doped with an antimonium compound<\/strong><br \/>A. Yamamori, C. Adachi, T. Koyama, Y. Taniguchi<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>86<\/strong>, 4369 - 4376, 1999<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.371372' target='_blank'>http:\/\/doi.org\/10.1063\/1.371372<\/a><br \/>[60]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#significantimprovementofdevicedurabilityinorganiclightemittingdiodesbydopingbothholetransportandemitterlayerswithrubrenemolecules' class='gray_back'><strong>[30] Significant improvement of device durability in organic light-emitting diodes by doping both hole transport and emitter layers with rubrene molecules<\/strong><br \/>G. Sakamoto, C. Adachi, T. Koyama, Y. Taniguchi, C. D. Merritt, H. Murata, Z. H. Kafafi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>75<\/strong>, 766 - 768, 1999<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.124506 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.124506 <\/a><br \/>[102]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#chargecarriertrappingeffectbyluminescentdopantmoleculesinsinglelayerorganiclightemittingdiodes' class='gray_back'><strong>[29] Charge carrier trapping effect by luminescent dopant molecules in single-layer organic light emitting diodes<\/strong><br \/>M. Uchida, C. Adachi, T. Koyama, Y. Taniguchi<br \/>\n<i>J. Appl. Phys.<\/i>, <strong>86<\/strong>, 1680 - 1687, 1999<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.370947' target='_blank'>http:\/\/doi.org\/10.1063\/1.370947<\/a><br \/>[200]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#a200nmx2mmarrayoforganiclightemittingdiodesandtheiranisotropicelectroluminescence' class='gray_back'><strong>[28] A 200nm x 2mm array of organic light-emitting diodes and their anisotropic electroluminescence<\/strong><br \/>N. Suganuma, C. Adachi, T. Koyama, Y. Taniguchi, H. Shiraishi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>74<\/strong>, 1206 - 1208, 1999<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.123500' target='_blank'>http:\/\/doi.org\/10.1063\/1.123500<\/a><br \/>[18]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-1998'>1998<\/h4><div rel='#specificconductivitydependenceondiameterofsubmicrosizedpolythiophenefibrils' class='gray_back'><strong>[27] Specific Conductivity Dependence on Diameter of Submicro-Sized Polythiophene Fibrils<\/strong><br \/>T. Koyama, M. Murata, S. Yamaguchi, C. Adachi, Y. Taniguchi<br \/>\n<i>Mol. Cryst. Liq. Cryst.<\/i>, <strong>322<\/strong>, 85 - 90, 1998<br \/>DOI: <a href='http:\/\/doi.org\/10.1080\/10587259808030204' target='_blank'>http:\/\/doi.org\/10.1080\/10587259808030204<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organiclightemittingdiodesusingtriphenylenederivativesasaholetransportmaterial' class='gray_back'><strong>[26] Organic Light Emitting Diodes Using Triphenylene Derivatives as a Hole Transport Material<\/strong><br \/>S. Tanaka, C. Adachi, T. Koyama, Y. Taniguchi<br \/>\n<i>Chem. Lett.<\/i>, <strong>10<\/strong>, 975 - 976, 1998<br \/>DOI: <a href='http:\/\/doi.org\/10.1246\/cl.1998.975' target='_blank'>http:\/\/doi.org\/10.1246\/cl.1998.975<\/a><br \/>[29]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#dopedorganiclightemittingdiodeshavinga650nmthickholetransportlayer' class='gray_back'><strong>[25] Doped organic light emitting diodes having a 650-nm-thick hole transport layer<\/strong><br \/>A. Yamamori, C. Adachi, T. Koyama, Y. Taniguchi<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>72<\/strong>, 2147 - 2149, 1998<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.121304 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.121304 <\/a><br \/>[139]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-1997'>1997<\/h4><div rel='#submicrometersizedorganiclightemittingdiodeswithatriphenylaminecontainingpolycarbonateasaguestmoleculeinapolymerblend' class='gray_back'><strong>[24] Submicrometer-Sized Organic Light Emitting Diodes with a Triphenylamine-Containing Polycarbonate as a Guest Molecule in a Polymer Blend<\/strong><br \/>C. Adachi, S. Hibino, T. Koyama, Y. Taniguchi<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>36<\/strong>, 827 - 830, 1997<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.36.L827' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.36.L827<\/a><br \/>[12]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#%e6%9c%89%e6%a9%9fel%e3%83%80%e3%82%a4%e3%82%aa%e3%83%bc%e3%83%89%e3%81%ab%e3%81%8a%e3%81%91%e3%82%8b%e3%82%aa%e3%82%ad%e3%82%b5%e3%82%b8%e3%82%a2%e3%82%be%e3%83%bc%e3%83%ab%e8%aa%98%e5%b0%8e%e4%bd%93' class='gray_back'><strong>[23] \u6709\u6a5fEL\u30c0\u30a4\u30aa\u30fc\u30c9\u306b\u304a\u3051\u308b\u30aa\u30ad\u30b5\u30b8\u30a2\u30be\u30fc\u30eb\u8a98\u5c0e\u4f53\u306e\u6750\u6599\u63a2\u7d22<\/strong><br \/>\u5b89\u9054 \u5343\u6ce2\u77e2, \u6c38\u4e95 \u4e00\u6e05, \u7530\u5143 \u671b<br \/>\n<i>\u30c7\u30a3\u30b9\u30d7\u30ec\u30a4 \u30a2\u30f3\u30c9 \u30a4\u30e1\u30fc\u30b8\u30f3\u30b0<\/i>, <strong>5<\/strong>, 4, 325 - 341, 1997<br \/>DOI: <a href='http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result23.pdf' target='_blank'>http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result23.pdf<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electroluminescenceof134oxadiazoleandtriphenylaminecontainingmoleculesasanemitterinorganicmultilayerlightemittingdiodes' class='gray_back'><strong>[22] Electroluminescence of 1, 3, 4-Oxadiazole and Triphenylamine-Containing Molecules as an Emitter in Organic Multilayer Light Emitting Diodes<\/strong><br \/>N. Tamoto, C. Adachi, K. Nagai<br \/>\n<i>Chem. Mat.<\/i>, <strong>9<\/strong>, 5, 1077 - 1085, 1997<br \/>DOI: <a href='http:\/\/doi.org\/10.1021\/cm960391+' target='_blank'>http:\/\/doi.org\/10.1021\/cm960391+<\/a><br \/>[347]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-1996'>1996<\/h4><div rel='#durabilitycharacteristicsofaminopyrenedimermoleculesasanemitterinorganicmultilayeredelectroluminescentdiodes' class='gray_back'><strong>[21] Durability Characteristics of Aminopyrene Dimer Molecules as an Emitter in Organic Multilayered Electroluminescent Diodes<\/strong><br \/>C. Adachi, K. Nagai, N. Tamoto<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>35<\/strong>, 4819 - 4825, 1996<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.35.4819' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.35.4819<\/a><br \/>[16]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-1995'>1995<\/h4><div rel='#moleculardesignofholetransportmaterialsforobtaininghighdurabilityinorganicelectroluminescentdiodes2' class='gray_back'><strong>[20] Molecular design of hole transport materials for obtaining high durability in organic electroluminescent diodes<\/strong><br \/>C. Adachi, K. Nagai, N. Tamoto<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>66<\/strong>, 2679 - 2681, 1995<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.113123 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.113123 <\/a><br \/>[441]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-1992'>1992<\/h4><div rel='#%e3%83%95%e3%82%bf%e3%83%ad%e3%82%b7%e3%82%a2%e3%83%8b%e3%83%b3%e3%83%9a%e3%83%aa%e3%83%ac%e3%83%b3%e8%aa%98%e5%b0%8e%e4%bd%93%e7%a9%8d%e5%b1%a4%e5%9e%8b%e5%a4%aa%e9%99%bd%e9%9b%bb%e6%b1%a0%e3%81%ab' class='gray_back'><strong>[19] \u30d5\u30bf\u30ed\u30b7\u30a2\u30cb\u30f3-\u30da\u30ea\u30ec\u30f3\u8a98\u5c0e\u4f53\u7a4d\u5c64\u578b\u592a\u967d\u96fb\u6c60\u306b\u304a\u3051\u308b\u5149\u96fb\u5909\u63db\u7279\u6027\u3068\u8272\u7d20\u306e\u5316\u5b66\u69cb\u9020\u306e\u95a2\u4fc2<\/strong><br \/>\u85e4\u7530 \u60a6\u660c, \u5b89\u9054 \u5343\u6ce2\u77e2, \u7b52\u4e95 \u54f2\u592b, \u658e\u85e4 \u7701\u543e<br \/>\n<i>\u65e5\u672c\u5316\u5b66\u4f1a\u8a8c<\/i>, <strong>10<\/strong>, 1154 - 1161, 1992<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/nikkashi.1992.1154' target='_blank'>https:\/\/doi.org\/10.1246\/nikkashi.1992.1154<\/a><br \/>[5]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organicelectroluminescentdeviceswithbrightblueemission' class='gray_back'><strong>[18] Organic electroluminescent devices with bright blue emission<\/strong><br \/>Y. Hamada, C. Adachi, T. Tsutsui, S. Saito<br \/>\n<i>Optoelectronics-Devices and Technologies<\/i>, <strong>7<\/strong>, 83 - 93, 1992<br \/>DOI: <a href='http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result18.pdf' target='_blank'>http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result18.pdf<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#bluelightemittingorganicelectroluminescentdeviceswithoxadiazoledimerdyesasanemitter' class='gray_back'><strong>[17] Blue-Light-Emitting Organic Electroluminescent Devices with Oxadiazole Dimer Dyes as an Emitter<\/strong><br \/>Y. Hamada, C. Adachi, T. Tsutsui, S. Saito<br \/>\n<i>Jpn. J. Appl. Phys.<\/i>, <strong>31<\/strong>, 1812 - 1816, 1992<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.31.1812' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.31.1812<\/a><br \/>[303]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#organicelectroluminescentdevicewithcyaninedyelangmuirblodgettfilmasanemitter' class='gray_back'><strong>[16] Organic electroluminescent device with cyanine dye Langmuir-Blodgett film as an emitter<\/strong><br \/>M. Era, C. Adachi, T. Tsutsui, S. Saito<br \/>\n<i>Thin Solid Films<\/i>, <strong>210\/211<\/strong>, 468 - 470, 1992<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/0040-6090(92)90314-2' target='_blank'>http:\/\/doi.org\/10.1016\/0040-6090(92)90314-2<\/a><br \/>[21]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-1991'>1991<\/h4><div rel='#%e6%9c%89%e6%a9%9f%e3%82%a8%e3%83%ac%e3%82%af%e3%83%88%e3%83%ad%e3%83%ab%e3%83%9f%e3%83%8d%e3%82%bb%e3%83%b3%e3%82%b9%e6%9d%90%e6%96%99%e3%81%a8%e3%81%97%e3%81%a6%e3%81%ae%e3%82%aa%e3%82%ad%e3%82%b5' class='gray_back'><strong>[15] \u6709\u6a5f\u30a8\u30ec\u30af\u30c8\u30ed\u30eb\u30df\u30cd\u30bb\u30f3\u30b9\u6750\u6599\u3068\u3057\u3066\u306e\u30aa\u30ad\u30b5\u30b8\u30a2\u30be\u30fc\u30eb\u8a98\u5c0e\u4f53\u306e\u8a55\u4fa1<\/strong><br \/>\u6d5c\u7530 \u7950\u6b21, \u5b89\u9054 \u5343\u6ce2\u77e2, \u7b52\u4e95 \u54f2\u592b, \u658e\u85e4 \u7701\u543e<br \/>\n<i>\u65e5\u672c\u5316\u5b66\u4f1a\u8a8c<\/i>, <strong>11<\/strong>, 1540 - 1548, 1991<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/nikkashi.1991.1540' target='_blank'>https:\/\/doi.org\/10.1246\/nikkashi.1991.1540<\/a><br \/>[17]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#effectofconfinedradiationfieldonspontaneousemissionlifetimeinvacuumdepositedfluorescentdyefilms' class='gray_back'><strong>[14] Effect of confined radiation field on spontaneous-emission lifetime in vacuum-deposited fluorescent dye films<\/strong><br \/>T. Tsutsui, C. Adachi, S. Saito, M. Watanabe, M. Koishi<br \/>\n<i>Chem. Phys. Lett.<\/i>, <strong>182<\/strong>, 143 - 146, 1991<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/0009-2614(91)80118-H' target='_blank'>http:\/\/doi.org\/10.1016\/0009-2614(91)80118-H<\/a><br \/>[36]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electroluminescenceinmultilayerorganicdyefilms' class='gray_back'><strong>[13] Electroluminescence in multilayer organic dye films<\/strong><br \/>T. Tsutsui, C. Adachi, S. Saito<br \/>\n<i>Syn Met.<\/i>, <strong>41<\/strong>, 3, 1193 - 1196, 1991<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/0379-6779(91)91588-2' target='_blank'>http:\/\/doi.org\/10.1016\/0379-6779(91)91588-2<\/a><br \/>[13]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#doubleheterostructureelectroluminescentdevicewithcyaninedyebimolecularlayerasanemitter' class='gray_back'><strong>[12] Double-heterostructure electroluminescent device with cyanine-dye bimolecular layer as an emitter<\/strong><br \/>M. Era, C. Adachi, T. Tsutsui, S. Saito<br \/>\n<i>Chem. Phys. Lett.<\/i>, <strong>178<\/strong>, 488 - 490, 1991<br \/>DOI: <a href='http:\/\/doi.org\/10.1016\/0009-2614(91)87007-X' target='_blank'>http:\/\/doi.org\/10.1016\/0009-2614(91)87007-X<\/a><br \/>[50]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#httpdemo2sgfilescomwpku_adachi' class='gray_back'><strong>[11] Electroluminescent mechanism of organic multilayer thin film devices<\/strong><br \/>C. Adachi, T. Tsutsui, S. Saito<br \/>\n<i>Optoelectronics-Devices and Technologies<\/i>, <strong>6<\/strong>, 25 - 36, 1991<br \/>DOI: <a href='http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result11.pdf' target='_blank'>http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result11.pdf<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-1990'>1990<\/h4><div rel='#%ef%bc%98%e3%82%ad%e3%83%8e%e3%83%aa%e3%83%8e%e3%83%bc%e3%83%ab%e9%a1%9e%e3%81%ae%e9%87%91%e5%b1%9e%e9%8c%af%e4%bd%93%e3%82%92%e7%94%a8%e3%81%84%e3%81%9f%e6%9c%89%e6%a9%9f%e9%9b%bb%e7%95%8c%e7%99%ba' class='gray_back'><strong>[10] \uff18-\u30ad\u30ce\u30ea\u30ce\u30fc\u30eb\u985e\u306e\u91d1\u5c5e\u932f\u4f53\u3092\u7528\u3044\u305f\u6709\u6a5f\u96fb\u754c\u767a\u5149\u7d20\u5b50\u306e\u767a\u5149\u7279\u6027<\/strong><br \/>\u68ee\u5ddd \u901a\u5b5d, \u5b89\u9054 \u5343\u6ce2\u77e2, \u7b52\u4e95 \u54f2\u592b, \u658e\u85e4 \u7701\u543e<br \/>\n<i>\u96fb\u5b50\u60c5\u5831\u901a\u4fe1\u5b66\u4f1a\u8ad6\u6587\u8a8c<\/i>, <strong>C-\u2161<\/strong>, 11, 661 - 666, 1990<br \/>DOI: <a href='http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result10.pdf' target='_blank'>http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result10.pdf<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#%e3%83%95%e3%82%bf%e3%83%ad%e3%82%b7%e3%82%a2%e3%83%8b%e3%83%b3%e3%81%8a%e3%82%88%e3%81%b3%e3%83%9a%e3%83%aa%e3%83%ac%e3%83%b3%e8%aa%98%e5%b0%8e%e4%bd%93%e3%82%92%e7%94%a8%e3%81%84%e3%81%9f%e6%9c%89' class='gray_back'><strong>[9] \u30d5\u30bf\u30ed\u30b7\u30a2\u30cb\u30f3\u304a\u3088\u3073\u30da\u30ea\u30ec\u30f3\u8a98\u5c0e\u4f53\u3092\u7528\u3044\u305f\u6709\u6a5f\u7a4d\u5c64\u578b\u592a\u967d\u96fb\u6c60\u306e\u7814\u7a76<\/strong><br \/>\u68ee\u5ddd \u5c1a, \u5b89\u9054 \u5343\u6ce2\u77e2, \u7b52\u4e95 \u54f2\u592b, \u658e\u85e4 \u7701\u543e <br \/>\n<i>\u65e5\u672c\u5316\u5b66\u4f1a\u8a8c<\/i>, <strong>9<\/strong>, 962 - 967, 1990<br \/>DOI: <a href='https:\/\/doi.org\/10.1246\/nikkashi.1990.962' target='_blank'>https:\/\/doi.org\/10.1246\/nikkashi.1990.962<\/a><br \/>[38]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#confinementofchargecarriersandmolecularexcitonswithin5nmthickemitterlayerinorganicelectroluminescentdeviceswithadoubleheterostructure' class='gray_back'><strong>[8] Confinement of charge carriers and molecular excitons within 5-nm-thick emitter layer in organic electroluminescent devices with a double heterostructure<\/strong><br \/>C. Adachi, T. Tsutsui, S. Saito<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>57<\/strong>, 531 - 533, 1990<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.103638 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.103638 <\/a><br \/>[475]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#blueelectroluminescenceinorganicmultilayerthinfilmdevices' class='gray_back'><strong>[7] Blue electroluminescence in organic multilayer thin film devices<\/strong><br \/>T. Tsutsui, C. Adachi, S. Saito <br \/>\n<i>Acta Polytechnica Scandinavia, Series Applied Physics<\/i>, <strong>170<\/strong>, 145 - 148, 1990<br \/>DOI: <a href='http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result7.pdf' target='_blank'>http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result7.pdf<\/a><br \/>[1]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electroluminescentmechanismoforganicthinfilmdevices' class='gray_back'><strong>[6] Electroluminescent mechanism of organic thin film devices<\/strong><br \/>C. Adachi, T. Tsutsui, S. Saito<br \/>\n<i>Acta Polytechnica Scandinavia, Series Applied Physics<\/i>, <strong>170<\/strong>, 215 - 218, 1990<br \/>DOI: <a href='http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result6.pdf' target='_blank'>http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result6.pdf<\/a><br \/>[2]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#%e6%9c%89%e6%a9%9f%e8%96%84%e8%86%9c%e9%9b%bb%e7%95%8c%e7%99%ba%e5%85%89%e7%b4%a0%e5%ad%90' class='gray_back'><strong>[5] \u6709\u6a5f\u8584\u819c\u96fb\u754c\u767a\u5149\u7d20\u5b50<\/strong><br \/>\u5b89\u9054 \u5343\u6ce2\u77e2, \u7b52\u4e95 \u54f2\u592b, \u658e\u85e4 \u7701\u543e <br \/>\n<i>\u30c6\u30ec\u30d3\u30b8\u30e7\u30f3\u5b66\u4f1a\u8a8c<\/i>, <strong>44<\/strong>, 5, p.578 - 584, 1990<br \/>DOI: <a href='http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result5.pdf' target='_blank'>http:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-content\/uploads\/2012\/09\/result5.pdf<\/a><\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#bluelightemittingorganicelectroluminescentdevices' class='gray_back'><strong>[4] Blue light-emitting organic electroluminescent devices<\/strong><br \/>C. Adachi, T. Tsutsui, S. Saito<br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>56<\/strong>, 799 - 801, 1990<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.103177' target='_blank'>http:\/\/doi.org\/10.1063\/1.103177<\/a><br \/>[785]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-1989'>1989<\/h4><div rel='#organicelectroluminescentdevicehavingaholeconductorasanemittinglayer' class='gray_back'><strong>[3] Organic electroluminescent device having a hole conductor as an emitting layer<\/strong><br \/>C. Adachi, T. Tsutsui, S. Saito <br \/>\n<i>Appl. Phys. Lett.<\/i>, <strong>55<\/strong>, 1489 - 1491, 1989<br \/>DOI: <a href='http:\/\/doi.org\/10.1063\/1.101586 ' target='_blank'>http:\/\/doi.org\/10.1063\/1.101586 <\/a><br \/>[784]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<h4 id='Papers-1988'>1988<\/h4><div rel='#organicelectroluminescentdevicewithathreelayerstructure' class='gray_back'><strong>[2] Organic Electroluminescent Device with a Three-Layer Structure<\/strong><br \/>C. Adachi, S. Tokito, T. Tsutsui, S. Saito<br \/>\n<i>Jpn. J. Appl. Phys. Part II<\/i>, <strong>27<\/strong>, L713 - 715, 1988<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.27.L713' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.27.L713<\/a><br \/>[234]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<div rel='#electroluminescenceinorganicfilmswiththreelayerstructure' class='gray_back'><strong>[1] Electroluminescence in Organic Films with Three-Layer Structure<\/strong><br \/>C. Adachi, S. Tokito, T. Tsutsui, S. Saito<br \/>\n<i>Jpn. J. Appl. Phys. Part II<\/i>, <strong>27<\/strong>, L269 - 271, 1988<br \/>DOI: <a href='http:\/\/doi.org\/10.1143\/JJAP.27.L269' target='_blank'>http:\/\/doi.org\/10.1143\/JJAP.27.L269<\/a><br \/>[414]:Number of citation <\/div><div class='white_back'><\/div><div class=\"clear\"><\/div><p><\/p>\n\n<\/div><!-- div.paper -->\n","protected":false},"excerpt":{"rendered":"<p>Paper list | Proceedings | International conferences | Patents<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-3809","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-json\/wp\/v2\/pages\/3809","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-json\/wp\/v2\/comments?post=3809"}],"version-history":[{"count":0,"href":"https:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-json\/wp\/v2\/pages\/3809\/revisions"}],"wp:attachment":[{"href":"https:\/\/www.cstf.kyushu-u.ac.jp\/~adachilab\/lab\/wp-json\/wp\/v2\/media?parent=3809"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}