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--> Frontier Research Institute for Interdisciplinary SciencesTohoku University Directions 日本語 English CONTACT 日本語 English About FRISGreetingsOverviewMissionsOrganizationTenure track system in FRISMaps & DirectionsPublicationAnnual MeetingAbstract for Annual MeetingConsultation DeskResearcherAdvanced Interdisciplinary Research DivisionHiroshi MasumotoTakehito ShimatsuTakashi ItohKenji TomaShinsuke NiwaTakaaki TomaiCreative Interdisciplinary Research DivisionYuanyuan GuoMasaki OkumuraNguyen Tuan HungHiroshi UenoToshiharu IchinoseYuta KudoHiroya AbeYuta NakayasuNaoya KitajimaDaniel Pastor-GalanYasunori OkamotoTakuro IshiiMasaki YamadaYuta YamaneKexin XiongKohei ShimokawaShinichi SatoKotaro YasuiSUN SaiYuji SaitoAtsushi TaharaKyoko ChibaYuka HatanoHakuto SuzukiKaoru HiramotoHideaki T. MatsubayashiAseel Mahmoud Suleiman MarahlehSakura KiuchiShigeo S. KimuraBin Ho LeTom WellingHiroyuki UechiFumi MurakoshiChao TangTakahiro ChibaIzumi MatsudairaYuka FujikiLinda ZhangYueh Hsuan WengManaging & Planning DivisionJunji SaidaHideaki FujiwaraEndowed Research DivisionsSenior-advisorTomoyuki YamayaVisiting Professors / Collaborative ResearchersSpecially-appointedOne-time membersSeiji KojimaDaisuke SuzukiHidenobu YajimaHirokazu KawamuraShozo FurumotoKanako ShojikiYiwen ZhangYuiko Morita-FujimuraPierre Antoine GESLINYuma TakahashiTatsuya SatoYuki FuruseKim Sung HoonYui ArimatsuYuichiro FujiokaRui NouchiAyako NakamuraNozomi SaitoTetsuya KajitaHiroyasu HatakeyamaYuki ShibazakiSohei TasakiHitomi AnzaiYuji ShimogonyaHideaki YamamotoHiroki TakikawaTakeshi InoueTakashi MisakaMikito TanakaGao JunhongNaoya OnizawaYasufumi ArakiDaisuke SaitoShusaku SugimotoMasafumi NakayamaHirofumi NodaMasanori IzumiMichiko KanoKohji TsumuraKenichi FunamotoMasahiro KayamaAtsushi NarukoShinsuke SuzukiGen HayaseDaisuke YoshinoTakashi ShimonishiHisashi InoueTakayuki KojimaNobuyuki MatsumotoSeiji KamadaSae KanekoTomoki KimuraYuichiro NakajimaShimpei EndoRui YamadaHisashi KinoYuki Suzuki Fumihiro KanedaYuji NashimotoYusuke SatoShuhei ObaraYasukazu DaigakuHanae AokiHiroki IdaAlimu TuohetiKaoru KakinumaJoji KusuyamaJiuhui HanYang CaoJun ZhangKohei TamuraChaoliang ZhangTomokatsu OnagaMasanori WakizakaKohei IchikawaTomomi TsunematsuChrystelle BERNARDKozue ShiomiYohei KawazuraSatoshi IihamaTakuya MabuchiFeatureTopicsFRIS InterviewsFRIS Interviews #01FRIS Interviews #02FRIS Interviews #03FRIS Interviews #04FRIS Interviews #05FRIS Interviews #06FRIS Interviews #07FRIS Interviews #08FRIS Interviews #09FRIS Interviews #10FRIS Interviews #11FRIS Interviews #12FRIS Interviews #13FRIS Interviews #14FRIS Interviews #15FRIS Interviews #16FRIS Hub MeetingFRIS Hub Meeting 2024FRIS Hub Meeting 2023FRIS Hub Meeting2022FRIS Hub Meeting2021FRIS Hub Meeting archiveProgramsOpen Research ProposalResearch ProjectsRecruitOpen Staff PositionsFRIS Regulations pertaining to the tenure track systemUseful Information for International ResearchersFRIS FundFRIS Fund for Early-Career Independent ResearchersLINK Researcher HOME en Researcher Creative Interdisciplinary Research Division Hiroshi Ueno ResearcherAdvanced Interdisciplinary Research DivisionCreative Interdisciplinary Research DivisionManaging & Planning DivisionEndowed Research DivisionsSenior-advisorVisiting Professors / Collaborative ResearchersSpecially-appointedOne-time members Hiroshi Ueno Assistant ProfessorMaterials and Energy Mentor Information Professor Fuminori Misaizu (Graduate School of Science) researchmap 東北大学研究者紹介 ウェブサイト--> Research Fields Physical organic chemistry, Nanomaterials science Research Subjects Design and Synthesis of Widely Fermi Level Tunable Organic Semiconducting Materials Academic Society Membership Chemical Society of Japan, The Fullerenes, Nanotubes and Graphene Research Society Research Outline   Development of organic electronics, that is breaking away from scarce resources, is one of the most important subjects in human society. Although organic semiconductors have many advantages such as sustainability, solution-processability, and flexibility over inorganic counterparts, their low mobility has been a heavy drawback. While doping, adding a small amount of charge carrier, has been widely used to overcome this issue, dopants possess the risk of distorting crystallinity, preventing conduction, and spreading themselves that often cause serious performance and stability lowering. A dopant having a similar molecular structure to a semiconducting molecule but different number of electrons is a possible candidate to bring about breakthroughs in organic electronics. Such unique structural relationship could allow a higher portion of dopant to be added, induce an efficient doping without crystallinity decreasing, and thereby give higher conductivity and wider Fermi level controllability to the materials. In addition, their basic physico-chemical properties could be precisely tuned by further chemical functionalization, which is a big advantage of organic molecules. Aim of this study is to design, synthesize, and utilize such unique molecules as "Widely Fermi Level Tunable Organic Semiconductors. ---> Related Posts PAGE TOP Frontier Research Institute for Interdisciplinary Sciences About FRIS GreetingsOverviewMissionsOrganizationTenure track system in FRISMaps & DirectionsPublicationAnnual MeetingConsultation Desk Researcher Advanced Interdisciplinary Research DivisionCreative Interdisciplinary Research DivisionManaging & Planning DivisionEndowed Research DivisionsSenior-advisorVisiting Professors / Collaborative ResearchersSpecially-appointedOne-time members Feature TopicsFRIS InterviewsFRIS Hub Meeting Research Programs Open Research ProposalResearch Projects Recruit Open Staff PositionsUseful Information for International Researchers FRIS CoRE FRIS CoRE FRIS Fund FRIS Fund for Early-Career Independent Researchers External Links for Early Career Researcher Support Division for Interdisciplinary Advanced Research and Education (DIARE) Ensemble Project for Early Career Researchers Support Program for the Article Processing Charge webmail LINK Copyrights © Frontier Research Institute for Interdisciplinary Sciences, Tohoku University All rights reserved. no cache

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