2023年
原著論文/Original Papers
  1. A. Seki, M. Funahashi, and K. Aoki, "Ferroelectric Photovoltaic Effect in the Ordered Smectic Phases of Chiral π-Conjugated Liquid Crystals: Improved Current-Voltage", Bull. Chem. Soc. Jpn., 96, 1224-1233 (2023). https://doi.org/10.1246/bcsj.20230185
  2. M. Funahashi, Bulk photovoltaic effect in ferroelectric liquid crystals comprising of quinquethiophene and lactic ester units, Org. Electron., 122, 106911 (2023). https://doi.org/10.1016/j.orgel.2023.106911
  3. S. Morishita, M. Kunihiro, M. Funahashi, N. Tsurumachi, Differences between one- and two-photon excited circularly polarized light emission processes in cholesteric liquid-crystalline semiconductors, J. Lumin., 263, 120068 (2023). https://doi.org/10.1016/j.jlumin.2023.120068
  4. K. Nakashima, R. Suizu, S. Morishita, N. Tsurumachi, M. Funahashi, Masu, Hyuma; Ozawa, Ryuki ; Nakamura, Kazuki; Awaga, Kunio, "Enhanced Circularly Polarized Luminescence (CPL) by a Homochiral Guest‒Host Interaction in Gyroidal MOFs, [Ru(bpy)3] [M2(ox)3] (bpy= 2,2'-bipyridyl, ox= oxalate, M= Zn and Mn)", ACS Materials Au, 3, 201-205 (2023).https://doi.org/10.1021/acsmaterialsau.2c00081
  5. Y. Matoba, S. Uemura, M. Funahashi*, Diastereomeric Effect on Bulk Photovoltaic Property and Polarized Electroluminescence in Ferroelectric Liquid Crystals Containing an Extended π-Conjugated Unit, Bull. Chem. Soc. Jpn., 96, 247-256 (2023). doi:10.1246/bcsj.20230011
  6. S. Yamamoto, R. Yamashita, C. Kubota, K. Okano, M. Kitamura, M. Funahashi, S.-C. Ye, Y.-T. Pan, M. Horie, T. Shintani, H. Murata, H. Matsuyama, and A. Mori*, Orthogonal electric and ionic conductivities in the thin film of thiophene-thiophene block copolymer, J. Mater. Chem. C, 11, 2484–2493 (2023). https://doi.org/10.1039/D2TC05454J

総説・解説/ Review Articles
  1. 舟橋正浩、「拡張π電子共役系を組み込んだ強誘電性液晶のバルク光起電力効果と分極誘起電界発光」、液晶, 27, 56-67 (2023). 液晶第27巻第1号
  2. 舟橋正浩、「ナノ相分離型電子活性液晶材料の電気化学機能材料への展開」、機能材料, 43, 41-49 (2023).

2022年
原著論文/Original Papers
  1. M. Kunihiro, E. Shimaoka, S. Morishita, N. Tsurumachi, M. Funahashi*, Carrier transport characteristics of glass-forming chiral liquid crystalline dimers based on oligo(phenylenevinylene) units, Mater. Adv., 3, 8428-8437 (2022). https://doi.org/10.1039/d2ma00899h     An illustration was adopted for a back side cover. Cover_MA003023.indd (rsc.org)
  2. E. Shimaoka, M. Kunihiro, M. Funahashi*, "Glass-forming chiral liquid crystalline dimers based on oligo(phenylenevinylene) unit exhibiting circularly polarized photoluminescence", ACS Appl. Polym. Mater., 4, 565-574 (2022). https://doi.org/10.1021/acsapm.1c01448
  3. T. Taga, S. Takaoka, S. Uemura, M. Funahashi*, "Liquid-Crystalline Perylene Bisimide Derivatives Bearing an Azacrown Ether Ring Complexing with Alkaline metal ions", Mater. Chem. Front., 6, 880-890 (2022). https://doi.org/10.1039/D1QM01542G
  4. C. Kubota; M. Kashimoto;R. Yamashita; K. Okano; M. Horie, M. Funahashi; T. Matsumoto, T. Nishino; A. Mori, "Studies on the properties of poly(3-alkylthiophene) copolymerized by a small amount of thiophene derivative bearing a cyclic siloxane moiety at the side chain, Bull. Chem. Soc. Jpn., 95, 882-888 (2022). https://doi.org/10.1246/bcsj.20220065

総説・解説/ Review Articles
  1. 舟橋正浩、「化学センサーの基礎 繰り返し使える表示材料物質などについて」 作業環境、2022年9月号(通巻70号)p. 46-69.

2021年
原著論文/Original Papers
  1. C. Kubota, D. Morita, K. Fujita, S. Yamamoto, T. Suzuki, K. Okano, M. Funahashi, M. Horie, A. Mori, "Thermally-Induced Doping of the Regioregular Polythiophene Bearing Alkylene Spacered Benzene sulfonate Group at the Side Chain", Heterocycles, 103,. 249-257 (2021). https://doi.org/10.3987/COM-20-S(K)3
  2. M. Funahashi, "High open-circuit voltage in the bulk photovoltaic effect for the chiral smectic crystal phase of a double chiral ferroelectric liquid crystal doped with a fullerene derivative", Mater. Chem. Front., 5, 8265–8274 (2021). https://doi.org/10.1039/D1QM01143J [An illustration is adopted for the Outside Front Cover]
  3. E. Shimaoka, M. Kunihiro, M. Funahashi*, "Glass-forming chiral liquid crystalline dimers based on oligo(phenylenevinylene) unit exhibiting circularly polarized photoluminescence", ACS Appl. Polym. Mater., 3, accepted (2021).
総説・解説/ Review Articles
  1. M. Funahashi, "Chiral liquid crystalline electronic systems", Symmetry, 13, 672 (2021). https://doi.org/10.3390/sym13040672 [Invited paper]
著書/ Books
  1. M. Funahashi, "Time-of-flight method for determining the drift mobility in organic semiconductors", Organic Semiconductors for Optoelectronics, edited by Hiroyoshi Naito, Wiley interscience 2021. https://doi.org/10.1002/9781119146131.ch6
  2. 石井 知彦・楠瀬 尚史・鶴町 徳昭・舟橋 正浩・松本 洋明・宮川 勇人編 「機能材料科学入門」 共立出版、2021年10月

2020年
原著論文/Original Papers
  1. A. Mori*, C. Kubota, K. Fujita, M. Hayashi, T. Ogura, T. Suzuki, K. Okano, M. Funahashi, and M. Horie, "Thermally Induced Self-Doping of π-Conjugated Polymers Bearing a Pendant Neopentyl Sulfonate Group", Macromolecules, 53, 1171-1179 (2020). https://doi.org/10.1021/acs.macromol.9b02554
  2. M. Suzuki, K. Nishiyama, N. Kani, M. Funahashi, S. Nakanishi and N. Tsurumachi*, "Dual-colour pump-probe spectroscopy to observe the transition between polariton branches in an ultrastrongly coupled microcavity containing organic dye molecules", Jpn. J. Appl. Phys., 59, SCCA08 (2020). https://doi.org/10.7567/1347-4065/ab53c8
  3. M. Funahashi*, Y. Mori, "Linearly polarized electroluminescence device in which the polarized plane can be rotated electrically using a chiral liquid crystalline semiconductor", Mater. Chem. Front., 4, 2137-2148 (2020). https://doi.org/10.1039/d0qm00086h
  4. Y. Mori, M. Funahashi*, "Bulk photovoltaic effect in organic binary systems consisting of a ferroelectric liquid crystalline semiconductor and fullerene derivatives Organic Electronics", Organic Electronics, 87, 105962 (2020). https://doi.org/10.1016/j.orgel.2020.105962
  5. J. Nakagawa, A. Seki, M. Funahashi*, "Enhancement of Spontaneous Polarization and Acid Vapor-Induced Polymerization in the Thin-Film States of Phenylterthiophene Derivative Bearing a Cyclotetrasiloxane Ring", Crystals, 10, 983 (2020). https://doi.org/10.3390/cryst10110983
  6. A. Seki*, M. Yoshio*, Y. Mori, M. Funahashi*, Ferroelectric Liquid-Crystalline Binary Mixtures Based on Achiral and Chiral Trifluoromethylphenylterthiophenes", ACS Applied Materials and Interfaces,12, 53029−53038 (2020). https://doi.org/10.1021/acsami.0c17717
  7. A. Seki, S. Uemura, M. Funahashi*, "Self-assembled structures of bent-shaped π-conjugated compounds: Effect of siloxane groups for nano-segregation", Cryst. Eng. Commun., 22, 8412-8420 (2020). https://doi.org/10.1039/d0ce01325k
総説・解説/ Review Articles
  1. M. Funahashi, "Solution-processable electronic and redox-active liquid crystals based on the design of side chains", Flexible and Printed Electronics, 5, 043001 (2020). https://doi.org/10.1088/2058-8585/aba19c
著書/ Books
  1. M. Funahashi, "Electrochemical Functions of Nanostructured Liquid Crystals with Electronic and Ionic Conductivity", Advances in Organic Crystal Chemistry - Comprehensive Reviews 2020, Chapter 18, 359-377. ed. by M. Sakamoto and H. Uekusa, Springer-Nature, 2020. DOI: 10.1007/978-981-15-5085-0_18
2019年
原著論文/Original Papers
  1. T. Ogura, C. Kubota, T. Suzuki, K. Okano, N. Tanaka, T. Matsumoto; T. Nishino, A. Mori*, T. Okita, M. Funahashi*,
    "Synthesis and Properties of Regioregular Polythiophene bearing Cyclic Siloxane Moiety at the Side Chain and the Formation of Polysiloxane Gel by the Acid Treatment on the Thin Film", Chem. Lett., 48, 611 - 614 (2019).
    https://doi.org/10.1246/cl.190139
  2. M. Suzuki, K. Nishiyama, N. Kani, X. Yu, K. Uzumi, M. Funahashi, F. Shimokawa, S. Nakanishi, N. Tsurumachi*, "Observation of ultrastrong-coupling regime in the Fabry-Pérot microcavities made of metal mirrors containing Lemke dye", Appl. Phys. Lett., 114, 191108 (2019). https://doi.org/10.1063/1.5080623
  3. M. Funahashi, "Electronic functions in liquid-crystalline nanostructures with high polarization", MRS Advances, 4, 1733 - 1740 (2019).
  4. N. Kani, M. Suzuki, K. Nishiyama, S. Nakanishi, M. Funahashi, and N. Tsurumachi*, Phys Rev. E, 100, 032701 (2019). https://doi.org/10.1103/PhysRevE.100.032701

総説・解説/ Review Articles
  1. 舟橋正浩、「液晶性電子機能材料における分極構造の形成と多重機能」、液晶、23巻、90-100 (2019).

2018年
原著論文/Original Papers
  1. A. Seki, M. Funahashi*, " Chiral photovoltaic effect in an ordered smectic phase of a phenylterthiophene derivative", Organic Electronics, 62, 311-319 (2018). https://doi.org/10.1016/j.orgel.2018.08.007
  2. Y. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, J. Park, D. G. Mazhukin, S.Shimono, H. Takahashi, J. Yamauchi, R. Tamura, "Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase", Chem. Eur. J., 24, 17293-17302 (2018). https://doi.org/10.1002/chem.201803534
総説・解説/ Review Articles
  1. 舟橋正浩、山岡龍太郎 「液晶相におけるナノ相分離を利用した多重機能型光電子材料」 化学工業69巻2018年4月号 p.30-36.
  2. 舟橋正浩 「液晶を使って電気を流す -液晶性電子機能材料の開発-」 化学と教育66巻5号 p. 248-251

2017年
原著論文/Original Papers
  1. M. Funahashi, "Anisotropic electrical conductivity of n-doped thin films of polymerizable liquid-crystalline perylene bisimide bearing a triethylene oxide chain and cyclotetrasiloxane rings", Mater. Chem. Front., 1, 1137-1146 (2017).
  2. K. Isoda*, I. Kawamoto, A. Seki, M. Funahashi, and M. Tadokoro, "Dipole-Driven Self-Organization of Liquid-Crystalline N-Heteroacene Derivatives Showing Redox-Properties", ChemistrySelect, 2, 300-303 (2017).
  3. A. Seki, Y. Funatsu, M. Funahashi*, "Anomalous photovoltaic effect based on molecular chirality: Influence of enantiomeric purity on the photocurrent response in π-conjugated ferroelectric liquid crystals", Phys. Chem. Chem. Phys., 19, 16446 - 16455 (2017).
  4. T. Sakata, M. Suzuki, T. Yamamoto, S. Nakanishi, M. Funahashi, N. Tsurumachi*, "Observations of cavity polaritons in one-dimensional photonic crystals containing perylene-derivative liquid-crystal organic semiconductors", Phys. Rev. E, 96, 042704 (2017).
  5. R. Yamaoka, M. Funahashi*, "Liquid-Crystalline Phthalocyanine Derivatives Bearing Oligosiloxane Moieties: Soft Columnar Mesophases Stabilized by Nanosegregation", ChemistrySelect, 2,11934-11941 (2017). [Highlited as a cover picture!]
  6. M. Funahashi*, A. Seki, "Anisotropic Electrical Conductivity of Nanosegregated Liquid-Crystalline Thin Films of Polymerizable Perylene Bisimide Bearing a Triethylene Oxide Chain and Cyclotetrasiloxane Rings", Proceedings of IDW '17, 1504-1507 (2017).

総説・解説/ Review Articles
  1. M. Funahashi, "Integration of electro-active π-conjugated units in nanosegregated liquid-crystalline phases", Polym. J., 49, 75-83 (2017). [invited paper]
  2. T. Kato*, M. Yoshio, T. Ichikawa, B. Soberats, H. Ohno, M. Funahashi, "Transport of ions and electrons in nanostructured liquid crystals", Nature Reviews Materials, 2, 17001 (2017).
著書/ Books
  1. 舟橋正浩、「Time-of-Flight法によるキャリア移動度の測定」 日本液晶学会編「液晶科学実験講座-基礎と計測-」、第14章、国際文献社 2017年9月1日

2016年
原著論文/ Original Papers
  1. K. Takenami, S. Uemura, M. Funahashi*, "In situ polymerization of liquid-crystalline thin films of electron-transporting perylene tetracarboxylic bisimide bearing cyclotetrasiloxane rings", RSC Advances, 6, 5474-5584 (2016).
  2. M. Funahash*, N. Takeuchi, A. Sonoda, "Liquid-crystalline perylene tetracarboxylic bisimide derivative bearing trisiloxan-2-yl moieties: Influence on mesomorphic property and electron transport", RSC Advances, 6, 18703 - 18710 (2016).
  3. A. Seki, M. Funahashi*, "Photovoltaic effects in ferroelectric liquid crystals based on phenylterthiophene derivatives", Chem. Lett.,45, 616-618 (2016).
総説・解説/ Review Articles
  1. A. Seki, M. Funahashi, "Nanostructure formation based on the functionalized side chains in liquid-crystalline heteroaromatic compounds", Heterocycles, 92, 3-30 (2016). [invited paper]
  2. 山岡龍太郎、舟橋正浩、「オリゴシロキサン鎖を活用した重合性ナノ相分離型液晶性半導体」 中條善樹監修「元素ブロック材料の創出と応用展開」 シーエムシー出版、p. 187-195, 2016年6月13日発行

著書/ Books

2015年
原著論文/ Original Papers
  1. Y. Funatsu, A. Sonoda, M. Funahashi*, "Ferroelectric liquid-crystalline semiconductors based on a phenylterthiophene skeleton: Effect of introduction of oligosiloxane moieties and photovoltaic effect", J. Mater. Chem. C, 3, 1982-1993 (2015).
  2. M. Kondo, Y. Inoue, Y. Koeduka, M. Funahashi; A. Heya, N. Matsuo, N. Kawatuki, "Synthesis of Phenylenevinylene Oligothiophene Derivatives with and without Cyano Side Substitution and Evaluation of Optoelectronic Characteristics", Chem. Lett., 44, 1010-1012 (2015).
  3. T. Hamamoto, M. Funahashi*, "Circularly polarized light emission from chiral nematic phenylterthiophene dimer exhibiting ambipolar carrier transport", J. Mater. Chem. C, 3, 6891-6900 (2015).
  4. M. Funahashi*, T. Hamamoto, Y. Funatsu, A. Seki, "Oligothiophene-based chiral LC semiconductors: Circularly
    polarized light emission and anomalous photovoltaic effect", Proceedings of IDW 15', 23-26 (2015).
総説・解説/ Review Articles
  1. 舟橋正浩、「電子機能ソフトマターとしての液晶性半導体」 液晶、19(2)、78-88 (2015). [学会賞受賞記念論文]
  2. M. Funahashi, T. Kato*, "Design of Liquid Crystals: From George Gray’s Nematic Molecules to Thiophene-based π-Conjugated Molecules", Liquid Crystals, 42, 909-917 (2015). [Prof. G. Gray 追悼論文]
著書/Books
  1. 舟橋正浩、「キラルな液晶分子が形成するナノ構造化電子システム」、中西尚志編集代表・エキゾティック自己組織化材料研究グループ編集 「自己組織化マテリアルのフロンティア」 フロンティア出版 p. 117- 125、2015年12月22日発刊

2014年
原著論文/ Original Papers
  1. M. Funahashi, and A. Sonoda, "Electron transport characteristics in nano-segregated columnar phases of perylene tetracarboxylic bisimide derivatives bearing oligosiloxane chains", Phys. Chem. Chem. Phys., 16 (17), 7754 - 7763 (2014).
  2. K Isoda, T. Abe, M. Funahashi, M. Tadokoro, "Electron Transport of Photoconductive n-Type Liquid Crystals Based on a Redox-Active Tetraazanaphthacene Framework", Chem. Eur. J., 20, 7232-7235 (2014). (DOI: 10.1002/chem.201402288)
  3. M. Mitani, S. Yamane, M. Yoshio, M. Funahashi, T. Kato, "Mechanochromic Photoluminescent Liquid Crystals Containing 5,5'-Bis(2-phenylethynyl)-2,2'-bithiophene", Mol. Cryst. Liq. Cryst., 594,.1-10 (2014).
  4. M. Funahashi, Y. Funatsu, K. Takenami, K. Seike, A. Sonoda, "Liquid Crystalline Semiconductors Bearing Cyclotetrasiloxane Rings and Their Ring-Opening Polymerization", Proceedings of IDW 14', 56-69 (2014).
  5. Y. Kim, M. Funahashi, N. Tamaoki, "Thieno[3,2-b]thiophene derivatives exhibiting semiconducting liquid-crystalline phases at lower temperatures", RSC Advances., 4, 60511 - 60518 (2014).
総説・解説/ Review Articles
  1. M. Funahashi, "Electronic functions and molecular aggregation of liquid-crystalline perylene tetracarboxylic bisimide derivatives bearing oligosiloxane chains", J. Org. Synth. Chem. Jpn., 72, 1006-1017 (2014). [Japanese]
  2. M. Funahashi, "Nanostructured Liquid-Crystalline Semiconductors - A New Approach to Soft Matter Electronics", J. Mater. Chem. C, 2, 7451-7459 (2014). [Highlight 論文]
著書/ Books
  1. 松浦和則、角五彰、岸村顕広、佐伯昭紀、竹岡敬和、内藤昌信、中西尚志、舟橋正浩、矢貝史樹 「有機機能材料 基礎から応用まで」 講談社 2014年3月20日

2013年
原著論文/ Original Papers
  1. Y. Funatsu, A. Sonoda, M. Funahashi, "Ferroelectric liquid crystal bearing terthiophene moiety", Trans. Mater. Res. Soc. Jpn., 38,373-375 (2013).
  2. M. Funahashi, T. Ishii, A. Sonoda, "Temperature-independent hole mobility of a smectic liquid-crystalline semiconductor based on band-like conduction", ChemPhysChem, 14, 2750-2758 (2013).
  3. M. Funahashi, A. Sonoda, "Liquid-crystalline perylene tetracarboxylic bisimide derivative bearing a triethylene oxide chain and complexation of the derivative with Li cations", Dalton Trans., 42, 15987-15994 (2013).
  4. M. Funahashi, M. Yamaoka, K. Takenami, A. Sonoda, "Liquid-crystalline perylene tetracarboxylic bisimide derivatives bearing cyclotetrasiloxane moieties", J. Mater. Chem. C, 1, 7872-7878 (2013).
  5. M. Funahashi, Y. Funatsu, T. Ishii, A. Sonoda, "Temperature-independent hole mobility in an ordered smectic phase of phenylterthiophene derivative and a columnar phase of perylene tetracarboxylic bisimide derivative", Proceedings of IDW 13', 40-43 (2013).
総説・解説/ Review Articles
  1. 舟橋正浩、「電子機能材料としての液晶 - ナノ構造制御と電子機能の新展開」、化学、68(1)、72-73 (2013).
  2. 舟橋正浩、「液晶性とナノ相分離を利用した有機電子材料の高機能化」 月刊クリーンテクノロジー, 23(1) . 62-66 (2013)
  3. 舟橋正浩、「Time-of-Flight法によるキャリア移動度の測定」、液晶, 17(1), 55-66 (2013).
  4. 舟橋正浩、「溶液プロセスによる有機半導体デバイスの作製」、日刊工業新聞、2013年2月28日[半導体産業特集]
  5. 舟橋正浩、「ナノ相分離を利用した新規液晶性半導体の電荷輸送」、機能性材料、33(5), 4-11 (2013).
著書/ Books
  1. M. Funahashi, T. Yasuda, T. Kato, "Liquid Crystal Semiconductors: Oligothiophene and Related Materials", in Handbook of Liquid Crystals, Vol. 7, Ed. by J. Goodby, P. J. Collings, T. Kato, C. Tschierske, H. Gleeson, P. Raynes, Wiley-VCH, 2013
  2. K. Isoda, T. Yasuda, M. Funahashi, T. Kato, "Redox-Active (Electrochromic) Liquid Crystals", in Handbook of Liquid Crystals, Vol. 7, Ed. by J. Goodby, P. J. Collings, T. Kato, C. Tschierske, H. Gleeson, P. Raynes, Wiley-VCH, 2013
2012
原著論文/ Original Papers
  1. M. Funahashi and A. Sonoda, "Liquid-crystalline perylene tetracarboxylic acid bisimide bearing oligosiloxane chains with high electron mobility and solubility", Organic Electronics, 13, 1633-1640 (2012).
  2. M. Funahashi, "Design of liquid-crystalline electronic functional materials through nanosegregation", Proc. SPIE, 8475, 84750E (2012). [Invited Lecture]
  3. M. Funahashi and A. Sonoda, "High electron mobility in a columnar phase of liquid-crystalline perylene tetracarboxylic bisimide bearing oligosiloxane chains", J. Mater. Chem., 22, 25190 - 25197 (2012).
  4. M. Funahashi, "Molecular Design and Electronic Functions of Nanostructured LC Semiconductors", Proceedings of IDW12', 349-352 (2012). [Invited Lecture]
総説・解説/ Review Articles
  1. 舟橋正浩、「ナノ相分離を利用した液晶性電子機能材料のデザイン」 化学工業 第63巻6号 p.421 -426  (2012).

2011年
原著論文/ Original Papers
  1. M. Nuita, J. Sakuda, Y. Hirai, M. Funahashi, T. Kato, “Hole Transport of a Liquid-Crystalline Phenylterthiophene Derivative Exhibiting the Nematic Phase at Ambient Temperature”, Chem. Lett., 40, 412-413 (2011).
  2. M. Funahashi, F. Zhang, and N. Tamaoki, “Temperature-Independent Hole Mobility in Field-Effect Transistors Based on Liquid-Crystalline Semiconductors”, IEICE Transactions, Electronics: C , E94C(11), 1720-1726 (2011). (The Institute of Electronics, Information and Communication Engineering) [Invited Paper]
  3. M. Funahashi, "Liquid-Crystalline Perylene and Phthalocyanine Derivatives Bearing Oligosiloxane Chains", Proceedings of IDW'11, 553-556 (2011).
総説・解説/ Review Articles
  1. 舟橋正浩、「電気伝導性を示すソフトマター - 柔らかい電子系への展開」 まてりあ50巻6号、p241-246(2011).
  2. 舟橋正浩、加藤隆史、「ナノ相分離を利用した液晶性π共役分子組織体の電子機能」 高分子、2011年60巻7月号p.463-464
2010年
原著論文/ Original Papers
  1. Y. Shoji, T. Yasuda, M. Yoshio, M. Funahashi, T. Kato, "Alignment of photoconductive self-assembled fibers composed of π-conjugated molecules under electric field", J. Mater. Chem., 20, 173-179 (2010).
  2. F. Zhang, M. Funahashi, N. Tamaoki, "Highly mechanically flexible thin film transistors from liquid crystalline semiconductors by solution processing", Organic Electronics, 11, 363-368 (2010).
  3. S. Yazaki, M. Funahashi, J. Kagimoto, H. Ohno, T. Kato, "Nanostructured Liquid Crystals Combining Ionic and Electronic Functions", J. Am. Chem. Soc., 132, 7702-7708 (2010).
  4. A. Matsui, M. Funahashi, T. Tsuji, T. Kato, “Hole Transport in Liquid-Crystalline Polymers with a Polysiloxane Backbone and a Phenylterthiophene Moiety in the Side Chain”, Chem. Eur. J., 16, 13465-13472 (2010).
  5. M. Funahashi, F. Zhang, N. Tamaoki," Flexible Field-Effect Transistors Based on a Liquid-Crystalline Semiconductor Fabricated by the Solution Shared-Deposition Method", Proceedings of IDW10', 1705-1708 (2010).
著書/ Books
  1. 舟橋正浩、安田琢麿、加藤隆史(分担)、「液晶性有機半導体のナノ構造化」、加藤隆史編 液晶‐構造制御と機能化の最前線-p.151-158, シーエムシー出版、2010年7月
2009年
原著論文/ Original Papers
  1. F. Zhang, M. Funahashi, and N. Tamaoki, "Liquid crystalline semiconductors with tetrafluorophenyl group: thin film structure and carrier transport", Organic Electronics, 10, 73-84 (2009).
  2. T. Yasuda, H. Ooi, J. Morita, Y. Akama, K. Minoura, M. Funahashi, T. Shimomura, and T. Kato, " π-Conjugated oligothiophene- based polycatenar liquid crystals: self-organization and photoconductive, luminescent, and redox properties", Adv. Funct. Mater., 19, 411-419 (2009). [Adopted as a Journal Cover]
  3. M. Funahashi, "Development of liquid crystalline semiconductors with high carrier mobility and their application to thin-film transistors", Polymer Journal, 41, 459-469 (2009). [Adopted as a Journal Cover、高分子学会日立化成賞受賞記念論文]
  4. M. Yoneya, M. Funahashi, H. Yokoyama, "Molecular dynamics simulation of the liquid crystalline semiconductor: 8-TTP-8", Proc. SPIE, 7232, 72320E (2009).
総説・解説/ Review Articles
  1. 舟橋正浩、玉置信之 「螺旋構造を持つ液晶性半導体」光技術コンタクト2009年2月号 p.84-89
  2. 舟橋正浩 “Liquid Crystalline Semiconductors and Their Application to Thin-Film Transistors” 高分子、2009582月号 p. 60   [Hot Topics]
  3. 舟橋正浩「液晶性半導体の電子デバイスへの応用と発光材料の可能性」未来材料20096月号 p.16-21
  4. 舟橋正浩「液晶性半導体の薄膜トランジスターへの応用」映像情報メディア学会誌200910月号 p. 1374-1375
2008年
原著論文/ Original Papers
  1. M. Funahashi, F. Zhang, N. Tamaoki, and J. Hanna, "Ambipolar transport in the highly ordered smectic phase of 2-alkyl-5''-alkynyl- terthiophene derivative in a wide temperature range", ChemPhysChem, 9, 1465-1473 (2008).
  2. H. Noguchi, T. Michinobu, N. Fujii, M. Funahashi, M. Tokita, J. Watanabe, and K. Shigehara, "Side chain liquid crystal poly(fumarate)s bearing tolane-based mesogens", J. Polym. Sci. A: Polym. Chem., 46, 5101-5114 (2008).
  3. S. Yazaki, M. Funahashi, and T. Kato, "Electrochromic liquid crystals consisting of π-conjugated and ionic moieties", J. Am. Chem. Soc.,130, 13206-13207 (2008). [Adopted as a Hot Topic of Nature Asia]
  4. T. Nakanishi, Y. Shen, J. Wang, S. Yagai, M. Funahashi, T. Kato, P. Fernandes, H. Moehwald, and D. G. Kurth, "Electron transport and electrochemistry of mesomorphic fullerenes with long-range ordered lamellae", J. Am. Chem. Soc., 130, 9236-9237 (2008).
  5. F. Zhang, M. Funahashi, and N. Tamaoki, "Flexible field-effect transistors fabricated on polymer films using liquid crystalline
    semiconductors with solution process", Proceedings of IDW08, 1495-1498 (2008).
総説・解説/ Review Articles
  1. 舟橋正浩「液晶性半導体を用いた薄膜トランジスター」液晶、2008年10月号 p. 297-306
著書/ Books
  1. M. Funahashi, H. Shimura, M. Yoshio and T. Kato, “Ionic and electronic conduction in liquid crystalline polymers”,
    in Structure and Bonding ed. by Takashi Kato, Springer Verlag, Berlin, 128, 151-179 (2008).
舟橋研究室
創造工学部 先端マテリアル科学コース  工学研究科 材料創造工学専攻
Funahashi Group
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