Mori Akira | Institute For Materials Chemistry And Engineering Kyushu University
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概要
関連著者
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Mori Akira
Institute For Materials Chemistry And Engineering Kyushu University
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Mori Akira
Institute for Materials Chemistry and Engineering, Kyushu University
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Takeshita Hitoshi
Institute Of Advanced Material Study 86 Kyushu University
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Mori A
Department Of Synthetic Chemistry The University Of Tokyo
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Takeshita Hitoshi
Tohwa Institute For Orient Studies Tohwa University
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Takeshita H
Kyushu Univ.
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Takeshita Hitoshi
Tohwa University
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Mori A
Institute Of Advanced Material Study 86 Kyushu University
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KATO Nobuo
Institute of Advanced Material Study, 86 Kyushu University
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UJIIE Seiji
Department of Material Science, Faculty of Science and Engineering, Shimane University
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Ujiie Seiji
Department Of Chemistry Shimane University
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Ujiie Seiji
Department Of Applied Chemistry Faculty Of Engineering Oita University
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Kubo K
Kyushu Univ. Kasuga
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Ujiie Seiji
Department of Material Science, Interdisciplinary Faculty of Science and Engineering, Shimane University
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加藤 修雄
大阪大学産業科学研究所
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TAKESHITA Hitoshi
Tohwa Institute for Orient Studies, Tohwa Unviersity
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Kato N
Osaka Univ. Ibaraki Jpn
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Kubo K
Kyushu Univ.
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Kubo Kanji
Institute for Materials Chemistry and Engineering, Kyushu University
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TAKESHITA Hitoshi
Institute of Advanced Material Study, Kyushu University
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Mori Atsunori
Department Of Synthetic Chemistry The University Of Tokyo
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Kubo Kanji
Institute For Materials Chemistry And Engineering Kyushu University
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Kato N
Department Of Bacteriology Nagoya University School Of Medicine
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Sugiyama Shigeru
Institute of Advanced Material Study, 86, Kyushu University
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Tian Guan
Institute of Advanced Material Study, 86, Kyushu University
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NOZOE Tetsuo
Tokyo Research Laboratories, Kao Corporation
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Nozoe T
Kao Corp. Tokyo Jpn
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Nozoe Tetsuo
Tokyo Research Laboratories Kao Corporation
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Takeshita Hitoshi
Tohwa Institute For Science Tohwa University
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Takeshita Hitoshi
Tohwa Institute For Oriental Science Tohwa University
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Mori A
Komatsu Ltd. Kanagawa Jpn
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Nozoe Tetsuo
Tokyo Reseach Laboratory of Kao Soap Co., Ltd.
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TAKEMOTO Manabu
Graduate School of Engineering Sciences, 39, Kyushu University
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Mori A
Tokyo Inst. Technol. Yokohama
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Mori Atsunori
Research Laboratory Of Resources Utilization Tokyo Institute Of Technology
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Mori Atsunori
Chemical Resources Laboratory Tokyo Institute Of Technology
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Takemoto Manabu
Graduate School Of Engineering Science 39 Kyushu University
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Takeshita H
Tohwa Univ. Fukuoka
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TSCHIERSKE Carsten
Department of Chemistry, Institute of Organic Chemistry, Martin-Luther-University Halle-Wittenberg
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YAMAMOTO Emi
Graduate School of Engineering Sciences, 39, Kyushu University
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Yamamoto Emi
Graduate School Of Engineering Science 39 Kyushu University
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Tschierske Carsten
Department Of Chemistry Institute Of Organic Chemistry Martin-luther-university Halle-wittenberg
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加藤 修雄
阪大産研
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Ikeda Yukari
Institute Of Advanced Material Study 86 Kyushu University
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Nakashima Hisataka
Graduate School of Engineering Sciences, 39, Kyushu University
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Li Zhi-Hong
Graduate School of Engineering Sciences, 39, Kyushu University
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Li Feng
Institute of Natural Medicine, University of Toyama
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Li Feng
シカゴ大学放射線科カートロスマン放射線像研究所
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Isobe M
Nagoya Univ. Nagoya
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SUTOH Takanori
Graduate School of Engineering Sciences, 39, Kyushu University
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KUBO Kanji
Graduate School of Engineering Science, 39, Kyushu University
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YAN Yong
Institute of Advanced Material Study, Kyushu University
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VILL Volkmar
Institute of Organic Chemistry, Hamburg University
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Li Feng
Institute Of Advanced Material Study Kyushu University
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Yan Y
Kyushu Univ. Fukuoka Jpn
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Vill V
Univ. Hamburg Hamburg Deu
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Vill Volkmar
Institute Fuer Organic Chemie Universitaet Hamburg
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Sutoh Takanori
Graduate School Of Engineering Sciences 39 Kyushu University
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IKEDA Yukari
Institute of Advanced Material Study, 86, Kyushu University
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YIN Bing
Institute of Advanced Material Study, 86, Kyushu University
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Kawakami Hiroko
Graduate School Of Engineering Sciences 39 Kyushu University
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HASHIMOTO Masashi
Graduate School of Engineering Sciences, 39, Kyushu University
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TAKEMATSU Shinji
Graduate School of Engineering Sciences, 39, Kyushu University
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Takematsu Shinji
Graduate School Of Engineering Sciences 39 Kyushu University
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Yin Bing
Institute Of Advanced Material Study 86 Kyushu University
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Hashimoto Masashi
Graduate School Of Engineering Sciences 39 Kyushu University
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Li Feng
Institut National De La Recherche Scientifique Inrs-sante Universite Du Quebec
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Mori Akira
Institute Of Advanced Material Study 86 Kyushu University
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Lin Y‐s
Department Of Chemistry Tamkang University
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KOBAYASHI Hiroshi
Institute of Advanced Biomedical Engineering and Science, Tokyo Women's Medical University
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ISOBE Ryuichi
Faculty of Pharmaceutical Sciences, Kyushu University
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TSUJI Kazuki
Graduate School of Engineering Sciences, 39, Kyushu University
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LIN Yun-Shan
Department of Chemistry, Tamkang University
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LIN Shih-Jue
Department of Chemistry, Tamkang University
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JIANG Shuan-Ya
Department of Chemistry, Tamkang University
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HUANG Tian-Chyuan
National Taipei College of Nursing
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HUANG Chien-Yu
National Hsinchu Teachers College
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KURIHARA Teruo
Department of Chemistry, Faculty of Science, Josai University
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MORITA Tadayoshi
Department of Chemistry, Graduate School of Science, Tohoku University
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SATO Ohki
Department of Chemistry, Faculty of Science, Saitama University
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KOIZUMI Yosuke
Department of Chemistry, Faculty of Science, Saitama University
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SEKIGUCHI Yoshihiro
Department of Chemistry, Faculty of Science, Saitama University
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YOSHIOKA Sachiko
Department of Chemistry, Faculty of Science, Saitama University
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TSUNETSUGU Josuke
Department of Chemistry, Faculty of Science, Saitama University
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NISHIMURA Tatsuya
Graduate School of Engineering Sciences, 39, Kyushu University
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MORI Ryoji
Graduate School of Engineering Sciences, 39, Kyushu University
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SASSA Takeshi
Department of Bioresource Engineering, Yamagata University
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Sato Ohki
Department Of Chemistry Faculty Of Science Saitama University
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Kato Nobuo
Department Of Bacteriology Nagoya University School Of Medicine
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Mori Ryoji
Graduate School Of Engineering Sciences 39 Kyushu University
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Tsuji Kazuki
Graduate School Of Engineering Sciences 39 Kyushu University
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Lin Shin
Department Of Chemistry Tamkang University
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Lin Shih-jue
Department Of Chemistry Tamkang University
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Isobe Ryuichi
Tohwa University
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Isobe Ryuichi
Faculty Of Pharmaceutical Sciences Kyushu University
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Koizumi Y
Department Of Chemistry Faculty Of Science Saitama University
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Kurihara T
Department Of Chemistry Faculty Of Science Josai University
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Jiang Shuan-ya
Department Of Chemistry Tamkang University
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小林 宏
Kyushu Univ. Hospital Fukuoka Jpn
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FUJIKI Kanji
Interdisciplinary Graduate School of Engineering Sciences, Kyushu University
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IKEDA Shin-ya
Interdisciplinary Graduate School of Engineering Sciences, Kyushu University
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NAGIRA Akihisa
Interdisciplinary Graduate School of Engineering Sciences, Kyushu University
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NIE Jin
Interdisciplinary Graduate School of Engineering Sciences, Kyushu University
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SONODA Takaaki
Institute of Advanced Material Study, Kyushu University
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YAGUPOLSKII Yurii
Institute of Organic Chemistry, National Academy of Sciences of Ukraine
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Mataka Shuntaro
Institute For Materials Chemistry And Engineering (imce) Kyushu University
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Mori Akira
Interdisciplinary Graduate School of Engineering sciences Kyushu University
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Yoshioka Sachiko
Department Of Agricultural Chemistry Kinki University
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Yoshioka Sachiko
Department Of Chemistry Faculty Of Science Saitama University
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Morita Tadayoshi
Department Of Chemistry Graduate School Of Science Tohoku University
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Tsunetsugu Josuke
Department Of Chemistry Faculty Of Science Saitama University
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Sekiguchi Yoshihiro
Department Of Chemistry Faculty Of Science Saitama University
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Kurihara Teruo
Department Of Chemistry Faculty Of Science Josai University
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Koizumi Yosuke
Department Of Chemistry Faculty Of Science Saitama University
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Endo Akihiro
Graduate School Of Engineering Sciences 39 Kyushu University
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NIMURA Ryuko
Graduate School of Engineering, Sciences, 39, Kyushu University
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ISOBE Masahiro
Department of Organic Synthesis, Faculty of Engineering, 36, Kyushu University
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MATSUMOTO Taisuke
Institute for Materials Chemistry and Engineering, Kyushu University
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Nie Jin
Interdisciplinary Graduate School Of Engineering Sciences Kyushu University
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YAN Yong
Graduate School of Engineering Sciences, 39, Kyushu University
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Lin Yun-shan
Department Of Chemistry Tamkang University
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Sato O
Saitama Univ. Saitama
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YAMAMOTO Shin-ichi
Graduate School of Engineering Science, 39, Kyushu University
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HATSUI Toshihide
Institute of Advanced Material Study, 86, Kyushu University
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TAGA Masashi
Institute of Advanced Material Study, 86, Kyushu University
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Kubo Kanji
School of Dentistry, Health Sciences University of Hokkaido
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Kakihara Yasuo
Graduate School of Engineering Sciences, Kyushu University
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Yin Bing-zhu
Institute Of Advanced Material Study 86 Kyushu University
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Nimura Ryuko
Graduate School Of Engineering Sciences 39 Kyushu University
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Taga Masashi
Institute Of Advanced Material Study 86 Kyushu University
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Fujiki K
Interdisciplinary Graduate School Of Engineering Sciences Kyushu University
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Uchida M
Tohoku Univ. Sendai
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Ikeda Shin-ya
Interdisciplinary Graduate School Of Engineering Sciences Kyushu University
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Nagira Akihisa
Interdisciplinary Graduate School Of Engineering Sciences Kyushu University
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Sonoda T
Institute Of Advanced Material Study Kyushu University
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Sonoda Takaaki
Institute Of Advanced Material Study And Graduate School Of Engineering Sciences Kyushu University
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Kobayashi H
Toshiba Corp. Kawasaki‐shi Jpn
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ISOBE Masahiro
Graduate School of Engineering Sciences, 39, Kyushu University
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LIU Ji-Feng
Graduate School of Engineering Sciences, 39, Kyushu University
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Ito Masahito
Graduate School Of Engineering Sciences 39 Kyushu University
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Isobe R
Faculty Of Pharmaceutical Sciences Kyushu University
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Tsunetsugu J
Saitama Univ. Saitama Jpn
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Tashiro Masashi
Institute Of Acvanced Material Study And Department Of Molecular Science And Technology Graduate Sch
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YONG Zhe
Graduate School of Engineering, Sciences, 39, Kyushu University
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HIRAYAMA Ken
Graduate School of Engineering Science, 39, Kyushu University
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KUBO Kanji
Faculty of Engineering, Kanagawa University
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TAYA Hisashi
Graduate School of Engineering Sciences, 39, Kyushu University
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UCHIDA Minoru
Graduate School of Engineering Sciences, 39, Kyushu University
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Wang Qian
Institute Of Advanced Material Study 86 Kyushu University
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Sugiyama Shigeru
Department Of Advanced Materials Institute Of Technology And Science The University Of Tokushima
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LIU Jifeng
Graduate School of Engineering Sciences, 39, Kyusyu University
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Yagupolskii Yurii
Institute Of Organic Chemistry National Academy Of Sciences Of Ukraine
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Fujiki Kanji
Interdisciplinary Graduate School Of Engineering Sciences Kyushu University
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Kobayashi H
Institute Of Scientific And Industrial Research Osaka University:crest Japan Science And Technology
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KURAHASHI Yoichi
Graduate School of Engineering Sciences, 39, Kyushu University
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Yamamoto Shin-ichi
Graduate School Of Engineering Science 39 Kyushu University
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Sassa Takeshi
Department Of Agricultural Chemistry Yamagata University
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Hirayama K
National Inst. Materials And Chemical Res. Ibaraki
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Matsumoto Taisuke
Institute For Materials Chemistry And Engineering Kyushu University
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Kobayashi Hiroshi
Institute Of Advanced Biomedical Engineering And Science Tokyo Women's Medical University
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Taya Hisashi
Graduate School Of Engineering Sciences 39 Kyushu University
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Sekiguchi Yoshihiro
Department Of Applied Chemistry Graduate School Of Engineering Tohoku University
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Hatsui T
Kyushu Univ. Fukuoka Jpn
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Hatsui Toshihide
Institute Of Advanced Material Study 86 Kyushu University
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Sassa Takeshi
Department Of Bioproduction Faculty Of Agriculture Yamagata Unviersity
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Kurahashi Yoichi
Graduate School Of Engineering Sciences 39 Kyushu University
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Kobayashi H
Ritsumeikan Univ. Kusatsu Jpn
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Kida Katsuhiko
Graduate School Of Engineering Sciences 39 Kyushu University
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KATAHIRA Kouki
Graduate School of Engineering Sciences, 39, Kyushu University
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Katahira Kouki
Graduate School Of Engineering Sciences 39 Kyushu University
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Takamori Yuuichi
Graduate School Of Engineering Sciences 39 Kyushu University
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Mori Akira
Institute Of Advanced Material Study Kyushu University
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TAKESHITA Hitoshi
Institute of Advanced Material Study, 86, Kyushu University
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Yamamoto Emi
Graduate School of Engineering Sciences, Kyushu University
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Mori Akira
Institute of Advanced Material Study, 86, Kyushu University
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SASSA Takeshi
Department of Agricultural Chemistry Faculty of Agriculture, Yamagata University
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Mataka Shuntaro
Institute of Advanced Material Study, 86, Kyushu University
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Tian Guan
Institute of Advanced Material Study, Kyushu University
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Mametsuka Hiroaki
Central Research Laboratories, Nippon Kokan Company, Ltd.
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Tomiyasu Kazushi
Institute of Advanced Material Study, 86, Kyushu University
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Kodama Mitsuaki
Pharmaceutical School of Tokushima Bunri University
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Kusaba Tomoyuki
Graduate School of Engineering Sciences, 39, Kyushu University
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Watanabe Hiroyasu
Graduate School of Engineering Sciences, 39, Kyushu University
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Kato Nobuo
Institute of Advanced Material Study, 86, Kyushu University
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Takeshita Hitoshi
Graduate School of Engineering Sciences, 39, Kyushu University
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Yamaguchi Hiroyuki
College of Technology, Ibaraki University
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Higashi Miwako
College of Technology, Ibaraki University
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Kubota Tadahiko
Graduate School of Engineering Sciences, 39, Kyushu University
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Sugiyama Shigeru
Department of Chemical Science and Technology, Faculty of Engineering, The University of Tokushima
著作論文
- Synthesis, Crystal Structure, and Mesomorphic Properties of Liquid Crystals with a Bis(tropon-2-yl)-4,4’-azobisbenzoate Core
- Synthesis and Properties of Columnar Liquid Crystals and Organogelator with a Bitropone Core
- Synthesis and Properties of Cholesteryl Benzoate Derivatives : Liquid Crystals and Organogelators
- Synthesis and Mesomorphic Properties of Tropon-4-yl 4-n-Alkoxybenzoates : Roles of a Tropone Ring as a Polar Terminal Group
- Synthesis, Complexation Behaviors, and Crystal Structures of Azamacrocycles Having Tropon-2-yl Groups
- Synthesis, Structure, and Mesomorphic Properties of Liquid Crystals with a Bitropone Core
- Synthesis, Crystal Structures and Mesomorphic Properties of Liquid Crystals with a N,N'-Bis(tropon-2-yl)piperazine Skeleton
- Lead(IV) Oxide-Mediated Oxidation of Azulen-2-ols to Form 1,1-Coupled Dimers and Hexacyclic Cage-Dimers
- Novel Non-benzenoid Electron Acceptors:Syntheses and Electron Acceptability of Tetracyanoazulenequinodimethanes and Dicyanoazulenequinonemethides
- A New Mercurophilic Troponoid Tetrathiacyclophane;2, 6, 8, 12-Tetrathia-1(2, 7), 7(2, 7)-ditropona-4(1, 3), 10(1, 3)-dibenzenacyclododecaphane
- Synthesis and Properties of Bis(5-alkoxytropolonato) Metallomesogens
- Evaluation of Lewis Acidity of "Naked"Lithium Ion through Diels-Alder Reaction Catalyzed by Lithium TFPB in Nonpolar Organic Solvents
- Synthesis and Mesomorphic Properties of Liquid Crystals with a 5,5'-Bitropolone Skelton
- Synthesis of 9-Deoxycotylenol Derivatives and Their Seed Germination-Stimulating Activity
- Inner Rotation of the Exocyclic C=C Bonds of Methyl 2-Cyano-(2-methyl-cyclohepta[b]thiophen-8-ylidene)acetate and Methyl 2-Cyano-(1,2-dimethylcyclohepta[b]pyrrol-8-ylidene)acetate
- Crucial Role of the Tropone C=O Group in Preferential Exhibition of Smectic C Phase through Intermolecular Hydrogen Bonding
- Mesomorphic Properties of 4-Benzoylaminobenzonitrile Derivatives Having an Electron-withdrawing Group with Hydrogen Bonding Ability
- Liquid Crystals with a 5-Cyanotropone Skeleton: 2-(4-Alkoxybenzoyloxy)-5-cyanotropones and 2-(4-Alkoxybenzoylamino)-5-cyanotropones
- Preparation of Sigmatropic 2-Acyloxy-5-perfluoroalkoxytropones : New Monocyclic Troponoid Liquid Crystals with an Enantiotropic Smectic A Phase
- Synthesis of 9-Deoxy-15-hydroxycotylenol and Its Germination-Stimulating Activity on Lettuce Seeds
- Photodimerizations of 1,5- and 1,7-Azulenequinones : Solvent, Substituent, and Concentration Effects on the Product Distribution
- Mesomorphic Properties of Bis(5-alkoxy-2-aminotroponato)coppers and Their N,N-Dimethyl Derivatives
- Appearance of the Induced Smectic A Phase in the Binary System between Two Troponoid Twins with the Opposite Dipole Moment
- New Twin-Type Troponoid Liquid Crystals with a Smectic C Phase
- Total Synthesis of Sollasin a and Sollasin d via Photocycloaddition of Methyl 2, 4-Dioxopentanoate to Methyl E-2-Methyl-2-butenoate
- Crystal Structures of 2-Aminotropone, N,N’-Di(tropon-2-yl)piperazine, and 5-(4-Ethoxyphenylazo)tropolone
- Synthesis and Mesogenic Properties of New Non-Sigmatropic, Monocyclic Troponoids, 5-Acyloxy-2-alkoxytropones
- Highly Thermally-Stable Diels-Alder Adducts of [60]Fullerene with 2-Cycloalkenones and Their Acetals
- Preparation of Tetraphenylazulenequinodimethanes from the Reactions of Azulenequinones with Diphenylketene and the ^1H NMR and UV-vis Spectral Studies in Acidic Media
- New Troponoid Liquid Crystalline Compounds, 5-Alkoxy-2-(4-alkoxybenzoylamino)tropones
- Synthesis and Mercurophilic Properties of 2,2'-Oxybis(ethylenethio)ditropone and α-[2-(2-Troponylthio)ethyl]-ω-(2-troponylthio)oligo(oxyethylene)
- Photodimerizations of 3-Methoxy-1, 5-azulenequinone via Consecutive Pericyclic Reactions
- Mesogenic Properties of Tricyclic 2, 5-Di(4-alkoxybenzoyloxy)tropones. Increasing Smectic Thermal Stabilities by the Lateral Polar Carbonyl Group
- High-Pressure Diels-Alder Reaction between Buckminsterfullerene and Tropone
- Geometrical Isomerism of the Exocyclic C=C Bonds of Heptafulvene Derivatives. Steric and Electronic Effects on the Rotational Barrier
- High-Pressure Diels-Alder Reaction of Cyclooctatetraene with Dimethyl 1,4-Dimethyl-7-oxabicyclo[2.2.1]hepta-2,5-diene2,3-dicarboxylate. Single Crystalline State Valence Isomerization of a syn-Tricyclo[4.2.0.0^]octane Derivative
- Concomitant Formation of Isomeric 1-, 2-, and 3-Substituted Heptafulvenes from 2-Substituted Tropones and Active Methylene Compounds
- Synthesis and Properties of 1-(Tropon-2-yl)-1-aza-4,7,10,13-tetraoxacyclopentadecanes. Preferential Complexation of Lithium Salt among the Alkali Salts
- Preferential Coordination of Mercury(II) Chloride to Ethereal Oxygens over Sulfurs in 23-Dicyanomethylene-5,8,11,14,17-pentaoxa-2,20-dithiabicyclo[19.4.1]hexacosa-1(26),21,24-triene and 20-Dicyanomethylene-5,8,11,14,-tetraoxa-2,17-dithiabicyclo[16.4.1]tri
- Preferential Exhibition of Smectic A Phase through Intramolecular Hydrogen Bonding in 2-Amino-5-phenyltropone Liquid Crystals
- Diels-Alder Reactions of Fullerene C_ and 4-Hydroxytropones
- Crystal Structures of 9, 10-Bis[bis(2-pyridylmethy)aminomethyl]anthracene and Its ZnCl_2 Complex. Intramolecular π-π Interaction between Anthracene and ZnCl_2-complexed Pyridine
- Troponoid Liquid Crystals(Abstract from International Seminar on Manufacturing of Advanced Materials)
- Reactions of tetrasulfur tetranitride with tropolone and its several halogeno derivatives. Preparations of 4H-cyclohepta[c][1,2,5]thiadiazol-4-ones, 6H-cyclohepta[c][1,2,5]thiadiazol-6-one, and 7H-cyclohepta[1,2-c:3,4-c']bis[1,2,5]thiadiazol-7-ones.
- Synthetic photochemistry. XLV. Photoconversion of 2-methylenehomobarrelenes to 9-methylenebarbaralanes.
- High-pressure cycloaddition of tropones to ethoxyethene. An occurrence of (4+2) and (8+2) cycloadditions.
- Synthetic photochemistry.LII. Substituent effects of a bromine atom on the high-pressure cycloaddition between 1-acetyl-7-bromocyclohepta[b]pyrrol-2(1H)-one and 2,3-bis(methoxycarbonyl)-7-oxanorbornadiene and the photorearrangement of 2-acetyl-9-bromo-2-a
- Synthetic photochemistry. XLVII. Formation and degenerate Cope rearrangement of 9-dicyanomethylenebarbaralane.
- Synthetic photochemistry. XLVI. Cycloaddition of exo, endo-2,7-bis-(methoxycarbonyl)-11,12-dioxatetracyclo[6.2.1.13,6.02,7]dodeca-4,9-diene and conjugated enones and p-quinones.
- The solid-phase 13C NMR spectra of several tropolone derivatives.
- Synthetic Photochemistry. LVII. Facile Photochemical Construction of Hexahydro-as-indacene Skeleton, a Carbon Framework of Ikarugamycin, from High-Pressure Diels-Alder Adducts of Tropones-Cyclopentenone.
- The kinetic evidence of the concerted[1,9]sigmatropy for the acetyl migration in the 2-acetoxytropones. The NMR spectral analysis of the seven-fold degenerated acetotropy of hexaacetoxytropone.
- Superjacent and subjacent orbitals participations for kinetically-controlled cycloaddition reactions of 2H-cyclohepta[b]furan-2-ones and 8,8-dicyanoheptafulvene to 2,3-bis(methoxycarbonyl)-7-oxabicyclo[2.2.1]heptadiene.
- Novel preparation of 1- and 3-substituted bicyclo[3.2.2]nona-3,6,8-trien-2-ones from tropones and 2,3-bis(methoxycarbonyl)-7-oxabicyclo-[2.2.1]heptadiene by high-pressure cycloaddition-thermal cycloreversion procedure.
- Pressure-accelerated Diels-Alder reactions of tropones with aromatic p-quinones.
- Synthetic photochemistry LV. Characterization of the lumiketone-type photoproducts, bicyclo(3.2.0)hept-3-en-2-ones, from 2,6-cycloheptadien-1-ones.
- Thermal cycloaddition reaction of tropone to 1,1-diethoxyethene. Structure revision of Cantrell's Diels-Alder adduct.
- The effect of pressure on sigmatropic rearrangements of seven-membered conjugated systems. [3, 3] And [1, 9]sigmatropies.