Takimiya Kazuo | Department Of Applied Chemistry Faculty Of Engineering Hiroshima University
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関連著者
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Takimiya Kazuo
Department Of Applied Chemistry Faculty Of Engineering Hiroshima University
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瀧宮 和男
広島大工
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大坪 徹夫
広島大工
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大坪 徹夫
広大院工
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TAKIMIYA Kazuo
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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大坪 徹夫
Department Of Applied Chemistry Graduate School Of Engineering Hiroshima University
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大坪 徹男
広島大学 工学部
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OTSUBO Tetsuo
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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森 健彦
東工大院理工
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川本 正
東工大院理工
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瀧宮 和男
広島大院工
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大坪 徹夫
広島大院工
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Aso Yoshio
Department Of Applied Chemistry Faculty Of Engineering Hiroshima University
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安蘇 芳雄
阪大産研
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ASO Yoshio
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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Misaki Y
Department Of Molecular Engineering Graduate School Of Engineering Kyoto University
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Miyazaki Eigo
Department Of Applied Chemistry Graduate School Of Engineering Hiroshima University
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坂東 祥匡
東工大院理工
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Tanaka Kazuyoshi
Department of Biofunctional Informatics, Graduate School of Health Care Sciences, Tokyo Medical and
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MISAKI Yohji
Department of Molecular Engineering, Graduate School of Engineering, Kyoto University
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Misaki Yohji
Department Of Applied Chemistry Graduate School Of Engineering Ehime University
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Ogura Fumio
Department Of Applied Chemistry Faculty Of Engineering Hiroshima University
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Misaki Yohji
Department Of Molecular Engineering Graduate School Of Engineering Kyoto University
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瀧宮 和男
広大院工
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OGURA Fumio
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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小倉 文夫
Department Of Applied Chemistry Graduate School Of Engineering Hiroshima University
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Misaki Yohji
Department Of Applied Chemistry Graduate School Of Science And Engineering Ehime University And Cres
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MORI Takehiko
Department of Organic and Polymeric Materials, Graduate School of Science and Engineering, Tokyo Ins
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TAKIMIYA Kazuo
Graduate School of Engineering, Hiroshima University
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MIYAZAKI Eigo
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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寺嶋 太一
物材機構
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宇治 進也
物材機構
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HARIMA Yutaka
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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Mori T
Tokyo Inst. Technol. Tokyo Jpn
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山岸 正和
阪大院理
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添田 淳史
阪大院理
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植村 隆文
阪大院理
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竹谷 純一
阪大院理
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竹谷 純一
阪大理
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垣内 徹
総研大
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遠藤 久孝
東工大院理工
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鴻池 貴子
物性研
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鴻池 貴子
物材機構
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Fujiwara H
Department Of Chemistry Graduate School Of Science Osaka Prefecture University And Crest Jst
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KAWAMOTO Tadashi
Department of Organic and Polymeric Materials, Graduate School of Science and Engineering, Tokyo Ins
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KUNUGI Yoshihito
Department of Applied Chemistry, Faculty of Engineering, Tokai University
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FUENO Hiroyuki
Department of Molecular Engineering, Graduate School of Engineering, Kyoto University
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KASHIKI Tomoya
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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澤 博
名大院工
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岡田 悠悟
阪大院理
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広瀬 友里
阪大院理
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北川 宏
九大院理
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伊東 裕
名大院工
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瀧宮 和男
広大工
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黒田 新一
名大院工
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若林 裕助
阪大基礎工
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若林 裕輔
物構研
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田中 久暁
名大院工
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渡辺 峻一郎
名大院工
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若林 祐助
物構研
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榎本 健悟
物材機構
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下位 幸弘
産総研ナノテク
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渡辺 峻一郎
名大院工応物
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Nakamura T
Waseda Univ. Tokyo Jpn
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中村 龍史
Department Of Applied Physics Waseda University
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榎本 健吾
物材機構(NIMS)
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宇野 真由美
大阪府産技研
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宇野 真由美
大阪府立産業技術総合研究所
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UENO Shinpei
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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ASHIZAWA Minoru
Department of Organic and Polymeric Materials, Graduate School of Science and Engineering, Tokyo Ins
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NII Hirofumi
Department of Organic and Polymeric Materials, Graduate School of Science and Engineering, Tokyo Ins
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NAKAYASHIKI Takashi
Department of Molecular Engineering, Graduate School of Engineering, Kyoto University
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NEGISHI Nobukazu
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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高森 安由美
広島大院工
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YASHIKI Fumihiko
Department of Applied Chemistry, Faculty of Engineering, Hiroshima University
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Muro T
Jasri Spring-8
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YAKUSHI kyuya
Institute for Molecular Science
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IZAWA Takafumi
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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SHINAMURA Shoji
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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KOJIMA Yasuhiko
Department of Chemistry, Tokyo Metropolitan University
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Dong Jian
Institute For Molecular Science
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Mori Hiroki
Department Of Clinical Diagnosis Shujitsu University School Of Pharmacy
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Ueno Shinpei
Department Of Applied Chemistry Graduate School Of Engineering Hiroshima University
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Nii Hirofumi
Department Of Organic And Polymeric Materials Graduate School Of Science And Engineering Tokyo Insti
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山浦 淳一
東大物性研
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寺崎 一郎
早大理工
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中尾 朗子
高エ研
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長谷川 達生
産総研
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高槻 有一
阪大院理
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難波 直子
阪大院理
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品村 祥司
広島大工
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山口 尚秀
物材機構
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宇野 真由美
阪大院理
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中澤 康浩
阪大院理
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大澤 辰彦
東工大院理工
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小林 孝嘉
東大理
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小林 孝嘉
東京大学理学系研究科
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小林 孝嘉
東京大学大学院理学系研究科
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小澤 陽
東大理
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坂本 勝洋
広大工
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大坪 徹夫
広大工
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若林 裕助
物構研
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澤 博
物構研
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TAKAHASHI Kazuyuki
Institute for Molecular Science, and CREST, Japan Science and Technology Agency
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KOBAYASHI Hayao
Institute for Molecular Science, and CREST, Japan Science and Technology Agency
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小谷 美枝
広島大院工
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ISHIKAWA Tetsushi
Department of Chemistry, Graduate School of Science and Engineering, Tokyo Institute of Technology
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NAKAZAWA Yasuhiro
Department of Chemistry, Graduate School of Science, Osaka University
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YAMASHITA Satoshi
Department of Chemistry, Graduate School of Science and Engineering, Tokyo Institute of Technology
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OGUNI Masaharu
Department of Chemistry, Graduate School of Science and Engineering, Tokyo Institute of Technology
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SAITO Kazuya
Department of Chemistry, Graduate School of Pure and Applied Sciences, University of Tsukuba
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中尾 朗子
高エネ研
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KOBAYASHI Akiko
Department of Humanities and Sciences, Nihon University
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齋藤 一弥
筑波大院数物
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Mizutani Teruyoshi
Depertment Of Electrical Engineering Nagoya University
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Mizutani Teruyoshi
Department Of Electrical Engineering School Of Engineering Nagoya University
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松井 弘之
産総研光技術
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長谷川 達生
産総研光技術
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新関 彰一
東大物性研
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瀧宮 和男
広島大学大学院工学研究科
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澤 博
総研大
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北川 宏
九大理
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西川 尚男
阪大院理
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土井 伊織
広大院工
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西川 尚男
東北大金研
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中村 龍史
阪大
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石川 哲史
東工大院理工
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小國 正晴
東京工業大学
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中澤 康浩
大阪大学
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ITO Akihiro
Department of Cancer Research, Hiroshima University
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若林 裕助
物講研
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澤 博
物講研
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TERASHIMA Taichi
National Institute for Materials Science
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UJI Shinya
National Institute for Materials Science
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Kobayashi Tsukasa
Anelva Corporation
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BANDO Yoshimasa
Department of Organic and Polymeric Materials, Graduate School of Science and Engineering, Tokyo Ins
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新関 彰一
東工大院理工
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EBATA Hideaki
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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SAKAMOTO Katsuhiro
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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KANATO Hiroki
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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NARUTAKI Masashi
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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TANAKA Koki
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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KAWABUCHI Koji
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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KAJIHARA Shotaro
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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TAKAMORI Ayumi
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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ASO Yoshio
Institute of Scientific and Industrial Research, Osaka University, CREST, Japan Science and Technolo
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AKUTSU Akane
Department of Organic and Polymeric Materials, Graduate School of Science and Engineering, Tokyo Ins
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NODA Bunpei
Department of Organic and Polymeric Materials, Graduate School of Science and Engineering, Tokyo Ins
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ASO Yoshio
The Institute of Scientific and Industrial Research, Osaka University, CREST, Japan Science and Tech
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大坪 徹夫
広島大学大学院工学研究科物質化学システム専攻
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安蘇 芳雄
大阪大学産業科学研究所
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中澤 康浩
東工大院理工
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小國 正晴
東工大院理工
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齋藤 一弥
阪大院理
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YAMADA Kohei
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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安蘇 芳雄
広島大院工
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TAKAHASHI Kazuyuki
Department of Molecular Engineering, Graduate School of Engineering, Kyoto University
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TANIOKA Hiroaki
Department of Molecular Engineering, Graduate School of Engineering, Kyoto University
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TANIGUCHI Masateru
Department of Molecular Engineering, Graduate School of Engineering, Kyoto University
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KATO Ken-ichi
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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SUMI Naoto
Department of Applied Chemistry, Faculty of Engineering, Hiroshima University
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NAKANISHI Hidetaka
Department of Applied Chemistry, Faculty of Engineering, Hiroshima University
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MORIKAMI Atsushi
Department of Applied Chemistry, Faculty of Engineering, Hiroshima University
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YANAGIMOTO Tetsuya
Department of Applied Chemistry, Faculty of Engineering, Hiroshima University
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YAMASHIRO Takashi
Department of Applied Chemistry, Faculty of Engineering, Hiroshima University
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Mori Hiroki
Department of Plastic and Reconstructive Surgery, Tokyo Medical and Dental University
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松井 弘之
産総研:東大新領域
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Kobayashi A
Department Of Humanities And Sciences Nihon University
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松井 弘之
東大院新領域
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Takimiya Kazuo
Department Of Applied Chemistry Graduate School Of Engineering Hiroshima University
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齊藤 一弥
阪大理
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Aonuma Shuji
Academic Frontier Promotion Center Osaka Electro-communication University
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小國 正晴
東京工業大学大学院理工学研究科
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小国 正晴
東京工業大学理学部
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Sato Ko-ichi
Plasma Science Center Nagoya University
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YAMANAKA SHOJI
Department of Pathology, Yokohama City University
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NAKANO Yoshiaki
Department of Surgery, NTT West Osaka Hospital
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NAKAMURA Terutaro
The Institute for Solid State Physics,Tokyo University
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Fujiwara E
Academic Frontier Promotion Center Osaka Electro-communication University
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Saito K
Research Center For Molecular Thermodynamics Graduate School Of Science Osaka University
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SHINMURA Yusuke
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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IWATANI Masahito
Department of Applied Chemistry, Graduate School of Engineering, Hiroshima University
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HUNG Hsio-Wen
Center for Future Chemistry, Kyushu University
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YAHIRO Masayuki
Center for Future Chemistry, Kyushu University
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ADACHI Chihaya
Center for Future Chemistry, Kyushu University
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Nakamura T
Hokkaido Univ. Sapporo Jpn
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Nakamura T
National Defense Acad. Kanagawa Jpn
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IKEDA MASATAKA
Department of Surgery, Graduate School of Medicine, Osaka University
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中村 高遠
静大院理工
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NIKI Toshikazu
Ishikawa Seisakusho, Ltd.
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Sumi Naoto
Department Of Applied Chemistry Faculty Of Engineering Hiroshima University
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Aso Yoshio
The Institute Of Scientific And Industrial Research Osaka University
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Tanaka Koki
Department Of Applied Chemistry Graduate School Of Engineering Hiroshima University
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Noda Bunpei
Department Of Organic And Polymeric Materials Graduate School Of Science And Engineering Tokyo Insti
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Nakamura Tomohiko
The Institute Of Scientific And Industrial Research Osaka University
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Yamashita Kazuo
Department Of Applied Chemistry Graduate School Of Engineering Hiroshima University
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Akutsu Akane
Department Of Organic And Polymeric Materials Graduate School Of Science And Engineering Tokyo Insti
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Hung Hsio-wen
Center For Future Chemistry Kyushu University
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Kanato Hiroki
Department Of Applied Chemistry Graduate School Of Engineering Hiroshima University
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Mori T
Department Of Organic And Polymeric Materials Graduate School Of Science And Engineering Tokyo Insut
著作論文
- 21pGS-4 高移動度ジオクチルベンゾチエノベンゾチオフェン結晶性塗布膜のホール効果(21pGS 界面デバイス1,領域7(分子性固体・有機導体))
- 25aXP-3 チオフェンオリゴマーの超高速分光(超高速現象,領域5(光物性))
- Thermodynamic Study of an Incommensurate Organic Superconductor (MDT-TSF)(AuI_2)_(Condensed matter: structure and mechanical and thermal properties)
- 27pYL-8 有機伝導体(EDT-TSF)_2X(X=GaCl_4, FeCl_4)の結晶構造と物性(τ-型, および各種相転移,領域7(分子性固体・有機導体))
- 30pRB-2 不整合格子を有する有機超伝導体(MDT-TS)I_xBr_yの物性(30pRB 超伝導物質,領域7(分子性固体・有機導体))
- 27pYD-7 Dinaphthothienothiophene薄膜トランジスタのホール効果(界面・分子デバイス3,領域7,分子性固体・有機導体)
- 21pWB-4 有機不整合格子系伝導体(MDT-TS)(I_3)_の構造と輸送特性(陽ラジカル塩,単一成分系,領域7(分子性固体・有機導体))
- 27pYL-6 放射光を用いた有機不整合格子系超伝導体(MDT-TS)(AuI_2)_の変調構造の観測(τ-型, および各種相転移,領域7(分子性固体・有機導体))
- Isotropic Uniaxial Strain Effect on the Incommensurate Organic Superconductor: (MDT-TS)(AuI_2)_(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- 21aRA-4 不整合格子を有する有機超伝導体(MDT-TS)(AuI_2)_の巨大非線形伝導と自発交流発振(β,β''塩・高電場効果,領域7,分子性固体・有機導体)
- Development of New Semiconducting Materials for Durable High-performance Air-stable Organic Field-effect Transistors
- Molecular Modification of 2,6-Diphenylbenzo[1,2-b:4,5-b']dichalcogenophenes by Introduction of Strong Electron-withdrawing Groups : Conversion from p- to n-Channel OFET Materials
- 25pYF-10 不整合格子系有機伝導体(MDT-TS)I_Br_おける非線形伝導(25pYF 電荷秩序等,領域7(分子性固体・有機導体))
- Thin Film Characteristics and FET Performances of β-Octyl-substituted Long Oligothiophenes
- Synthesis and Photovoltaic Properties of Tetrathiafulvalene-Oligothiophene-Fullerene Triads
- Development and Photovoltaic Performance of Oligothiophene-sensitized TiO_2 Solar Cells
- 30pRB-1 有機不整合格子系伝導体(MDT-TS)(AuI_2)_の基底状態(30pRB 超伝導物質,領域7(分子性固体・有機導体))
- 新規電界発光(EL)材料として嵩高いテルフェニルピリジン,トリチルフェニルピリジンおよびテルチエニルピリジンをリガンドとするイリジウム錯体
- Anisotropic Three-dimensional Superconductivity of the Incommensurate Organic Superconductor (MDT-ST)(I_3)_(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- 24pYK-11 (MDT-TS)(Aul_2)_の一軸圧縮による物性(π-d系1, N-1移転,領域7(分子性固体・有機導体))
- 第50回中国四国産学連携化学フォーラム
- Dendrimer-Encapsulated Oligothiophenes
- 14aTM-2 有機不整合格子系超伝導体 (MDT-TSF)(I_3)_ のフェルミ面(陽ラジカル塩・ET 塩 : α型, 領域 7)
- Synthesis and Structures of Highly Conducting Charge-Transfer Salts of Selenium Containing TTM-TTP Derivatives
- Synthesis and Photovoltaic Effects of Oligothiophenes Incorporated with Two [60]Fullerenes
- 28pWL-12 ヨウ素無限鎖をもつ有機不整合格子系超伝導体(MDT-ST)(I_3)_の構造と電子状態(BETS塩・陽ラジカル塩)(領域7)
- 28pWL-11 不整合格子を持つ新規有機超伝導体(MDT-TS)(AuI_2)_(BETS塩・陽ラジカル塩)(領域7)
- 含セレン有機伝導体の最近の進歩 : 新合成法,新物質,新伝導体
- Synthesis and Structures of Neutral Crystals and Charge-Transfer Salts of Selenium Containing TMET-TTP Derivatives
- 20aXE-9 有機超伝導体 (MDT-TTF)_2(AuI_2) と (MDT-TSF)(AuI_2)_ の低温熱容量特性
- Oligothiophene/fullerene Dyads as Active Photovoltaic Materials
- 28aZA-6 ヨウ素無限鎖をもつ超伝導性有機不整合結晶 (MDT-ST) (I_3)_ の超伝導特性
- 次世代エレクトロニクス素子に向けた ナノ共役分子の開発と機能
- Preparation and Characterization of Novel Aromatic-inserted Tris-fused Tetrathiafulvalenes
- Synthesis, Structures, and Properties of Two Isomeric Naphthodithiophenes and Their Methyl, Methylthio, and 2-Thienyl Derivatives ; Application to Coductive Charge-Transfer Complexes and Low-Bandgap Polymers
- Synthess, Optical, and Conductive Properties of Long Oligothiophenes and Their Utilization as Molecular Wires
- Synthesis and Properties of a Series of the Longest Oligothiophenes up to the 48-mer
- Structures and Properties of (TMEO-ST-TTP)_2AsF_6
- Syntheses and Properties of 11,11,12,12-Tetracyano-2,6-anthraquinodimethane (TANT) and Its 9,10-Dichloro Derivative as Novel Extensive Electron Acceptors
- Double - Bridged Tetrathiafulvalenophanes as Novel Electron Donors : Syntheses, Structures, and Properties of Three Structural Isomers
- Facile Preparation and Charge-Transfer Complexes of Naphtho[1,8-bc:4,5-b'c']dithiophene and 2,5-Dimethyl and Bis(methylthio) Derivatives
- Alkylated 2,6-Bis(dicyanomethylene)-2,6-dihydrobenzo[1,2-b:4,5-b']dithiophenes : New Soluble n-Channel Organic Semiconductors for Air-stable OFETs
- 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
- Unique Molecular Arrangement in Semiconducting Layer and FET Characteristics of Thin Film Transistors Based on 2,6-Dialkylbenzo[1,2-b:4,5-b']diselenophenes (C_n-BDSs)
- 2,6-Dialkylbenzo[1,2-b:4,5-b']dithiophenes (C_n-BDTs) as Soluble Organic Semiconductors for Solution-processed Organic Field-effect Transistors
- 23pRL-7 高移動度低分子材料C_8-BTBTにおけるキャリアの電場誘起ESR観測(23pRL 界面デバイス1,領域7(分子性固体・有機導体))
- 24pRL-10 塗布結晶化法による有機半導体単結晶とその高移動度トランジスタ特性(24pRL 界面デバイス2,領域7(分子性固体・有機導体))
- Aminopropyl-Glucose Sequentially Grafted Mesoporous Silica Nanocomposite as a Novel Boron Adsorbent
- Conductive, Magnetic, and Optical Properties of Sterically Hindered Dodecithiophenes. Evidence for the Coexistence of Bipolaron and π-Dimer
- Synthesis and Characterization of N-Acyl-substituted PyrroloTTF Derivatives and Improved Air-stability of PyrroloTTF-based OFETs
- Structures and Electrical Properties of β- and θ-(BTM-TTP)_2SbF_6
- New Stable Metallic Salt Based on a Donor Molecule Containing peri-Ditellurium Bridges, TMTTeN(SCN)_
- Spectroscopic Study of Isostructural Charge-Transfer Salts:Non-metallic DMTTA-BF_4 and Metallic DMTSA-BF_4
- Metallic Properties of 1:1 Charge-Transfer Salt,Dimethyltetraselenoanthracene-Tetrafluoroborate (DMTSA-BF_4)
- 23pRL-2 高移動度有機半導休材料の孤立分子のESR解析(23pRL 界面デバイス1,領域7(分子性固体・有機導体))
- Recent Synthetic Advances of Tetrathiafulvalene-Based Organic Conductors
- Synthesis and Properties of Bis(ethyleneseleno)tetrathiafulvalene (BES-TTF) and Diselenolotetrathiafulvalene (DS-TTF) as Novel Electron Donors
- Synthesis and Properties of New Tetrathiapentalene Donors Composed of Vinylogous TTFs
- Structures and Electrical Properties of (BTM-TS-TTP)_4PF_6
- WANTS-NEEDS-SEEDS 3次元有機トランジスタ--縦型チャネルの集積化による有機トランジスタの高性能化
- Solution-Processed Dioctylbenzothienobenzothiophene-Based Top-Gate Organic Transistors with High Mobility, Low Threshold Voltage, and High Electrical Stability
- Very High Mobility in Solution-Processed Organic Thin-Film Transistors of Highly Ordered [1]Benzothieno[3,2-b]benzothiophene Derivatives
- Three Structural Isomers of Dinaphthothieno[3,2-b]thiophenes : Elucidation of Physicochemical Properties, Crystal Structures, and Field-Effect Transistor Characteristics
- Efficient Photocurrent Generation at Dinaphtho[2,3-b:2',3'-f]thieno[3,2-b]thiophene/C_ Bilayer Interface
- 28aTN-7 C_8-BTBTのFETデバイスにおける電場誘起ESR信号のシミュレーション解析(28aTN 界面デバイス,領域7(分子性固体・有機導体))
- Two Isomeric Didecyl-dinaphtho〔2,3-b:2',3'-f〕thieno〔3,2-b〕thiophenes : Impact of Alkylation Positions on Packing Structures and Organic Field Effect Transistor Characteristics (Special Issue : Applied Physics on Materials Research)
- A Soluble α-Dithienotetrathiafulvalene Derivative for Organic Field-effect Transistors
- Electroconductive π-Junction Au Nanoparticles
- Syntheses and Properties of Dimethyl and Tetramethyl Anthra(1,9-cd:4,10-c'd')bis(1,2)dichalcogenoles and Their Charge-Transfer Complexes.