Inoue H | Crest Jst (japan Science And Technology)
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概要
関連著者
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Inoue H
Department Of Applied Chemistry Graduate Course Of Urban Environmental Sciences Tokyo Metropolitan U
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Inoue Haruo
Department Of Applied Chemistry Graduate Course Of Engineering Tokyo Metropolitan University
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Inoue Haruo
Department Of Applied Chemistry Graduate School Of Engineering Tokyo Metropolitan University
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Inoue H
Crest Jst (japan Science And Technology)
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INOUE HARUO
Department of Applied Chemistry, Graduate Course of Urban Environmental Sciences, Tokyo Metropolitan
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Takagi Shinsuke
Department Of Applied Chemistry Graduate Course Of Urban Environmental Sciences Tokyo Metropolitan U
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Takagi Shinsuke
Department Of Industrial Chemistry Faculty Of Technology Tokyo Metropolitan University
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Takagi S
Nagoya Inst. Technology Nagoya
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TAKAGI SHINSUKE
Department of Applied Chemistry, Graduate Course of Urban Environmental Sciences, Tokyo Metropolitan
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Inoue H
Department Of Applied Chemistry Graduate School Of Engineering Tokyo Metropolitan University
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SHIRAGAMI Tsutomu
Department of Applied Chemistry, Faculty of Engineering, Miyazaki University
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Shiragami Tsutomu
Department Of Applied Chemistry Faculty Of Engineering Miyazaki University
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Shiragami Tsutomu
Department Of Applied Chemistry Faculty Of Engineering University Of Miyazaki
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Yasuda M
Osaka Univ. Osaka
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YASUDA Masahide
Department of Applied Chemistry, Faculty of Engineering, Miyazaki University
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Shimada Tetsuya
Department Of Applied Chemistry Graduate Course Of Urban Environmental Sciences Tokyo Metropolitan U
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Tachibana Hiroshi
Department Of Applied Chemistry Graduate Course Of Urban Environmental Sciences Tokyo Metropolitan U
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Yasuda M
Faculty Of Engineering Department Of Applied Chemistry University Of Miyazaki
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Yasuda Masahide
Department Of Applied Chemistry Faculty Of Engineering Miyazaki University
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Shimada T
Department Of Applied Chemistry Shibaura Institute Of Technology
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YASUDA Masahide
Depariment of Hygienic Chemistry, Osaka College of Pharmacy
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SHIMADA TETSUYA
Department of Applied Chemistry, Graduate Course of Urban Environmental Sciences, Tokyo Metropolitan
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TACHIBANA HIROSHI
Department of Applied Chemistry, Graduate Course of Urban Environmental Sciences, Tokyo Metropolitan
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Yasuda Masahide
Faculty Of Engineering Department Of Applied Chemistry University Of Miyazaki
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Yasuda Masahide
Department Of Applied Chemistry Faculty Of Engineering University Of Miyazaki
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INOUE Haruo
CREST, JST (Japan Science and Technology)
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Matsumoto Jin
Faculty Of Engineering Department Of Applied Chemistry University Of Miyazaki
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Matsumoto Jin
Department Of Mechanical Engineering Saitama Institute Of Technology
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EGUCHI Miharu
Department of Applied Chemistry, Graduate Course of Urban Environmental Sciences, Tokyo Metropolitan
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Eguchi Miharu
Department Of Applied Chemistry Graduate Course Of Urban Environmental Sciences Tokyo Metropolitan U
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Matsumoto Jin
Department Of Applied Chemistry Faculty Of Engineering University Of Miyazaki
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YUI Tatsuto
Department of Crystalline Materials Science, Graduate School of Engineering, Nagoya University
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NABESHIMA Keiko
Department of Applied Chemistry, Faculty of Engineering, Miyazaki University
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TONG Zhiwei
Department of Applied Chemistry, Graduate Course of Engineering, Tokyo Metropolitan University
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Tong Zhiwei
Dep. Of Chemical Engineering Huaihai Inst. Of Technol.
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Nabeshima Keiko
Department Of Applied Chemistry Faculty Of Engineering Miyazaki University
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Masui Dai
Department Of Applied Chemistry Graduate Course Of Urban Environmental Sciences Tokyo Metropolitan U
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Ishida Yohei
Department Of Applied Chemistry Graduate Course Of Urban Environmental Sciences Tokyo Metropolitan U
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TRYK Donald
Department of Applied Chemistry, School of Engineering, The University of Tokyo
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Yui Tatsuto
Department Of Crystalline Materials Science Graduate School Of Engineering Nagoya University
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Tryk Donald
Department Of Applied Chemistry Graduate Course Of Urban Environmental Sciences Tokyo Metropolitan U
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Tryk Donald
Deparment Of Applied Chemistry Faculty Of Engineering The University Of Tokyo
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OKAMOTO Takanobu
Department of Industrial Chemistry, Faculty of Technology, Tokyo Metropolitan University
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Okamoto T
Department Of Industrial Chemistry Faculty Of Technology Tokyo Metropolitan University
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OKAMOTO Takanobu
Department of Exercise Physiology, Nippon Sport Science University
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塩盛 弘一郎
宮崎大学工学部 物質環境科学科
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KONNO SAKI
Department of Applied Chemistry, Graduate Course of Urban Environmental Sciences, Tokyo Metropolitan
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ISHIDA YOHEI
Department of Applied Chemistry, Graduate Course of Urban Environmental Sciences, Tokyo Metropolitan
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CEKLOVSKY ALEXANDER
Department of Applied Chemistry, Graduate Course of Urban Environmental Sciences, Tokyo Metropolitan
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MASUI DAI
Department of Applied Chemistry, Graduate Course of Urban Environmental Sciences, Tokyo Metropolitan
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Konno Saki
Department Of Applied Chemistry Graduate Course Of Urban Environmental Sciences Tokyo Metropolitan U
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Shima Kensuke
Department Of Applied Chemistry Faculty Of Engineering Miyazaki University
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TAKAGI Katsuhiko
Department of Crystalline Materials Science, Graduate School of Engineering, Nagoya University
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Yamaguchi Y
Department Of Materials Chemistry Graduate School Of Engineering Yokohama National University
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Yamaguchi Yoshitaka
Institute Of Advanced Material Study Graduate School Of Engineering Sciences And Crest Japan Science
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Ishikawa Kazuki
Department Of Applied Chemistry Faculty Of Engineering Miyazaki University
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ANDOU Yoshito
Department of Applied Chemistry, Faculty of Engineering, Miyazaki University
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Yamaguchi Yoshitaka
Department Of Materials Chemistry Graduate School Of Engineering Yokohama National University
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Ceklovsky Alexander
Department Of Applied Chemistry Graduate Course Of Urban Environmental Sciences Tokyo Metropolitan U
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Andou Yoshito
Department Of Applied Chemistry Faculty Of Engineering Miyazaki University
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Zhang Guozhen
Department Of Crystalline Materials Science Graduate School Of Engineering Nagoya University
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Zhang Guozhen
Department Of Applied Chemistry Graduate Course Of Engineering Tokyo Metropolitan University
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NAKASHIMA Satoko
Department of Applied Chemistry, Faculty of Engineering, University of Miyazaki
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TAKAGI Shinsuke
CREST, JST (Japan Science and Technology Agency)
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MAKISE Ryu-ichi
Department of Applied Chemistry, Faculty of Engineering, University of Miyazaki
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INOKUCHI Yousuke
Department of Applied Chemistry, Faculty of Engineering, University of Miyazaki
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Makise Ryu-ichi
Department Of Applied Chemistry Faculty Of Engineering University Of Miyazaki
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YAMAGUCHI Yorihisa
Department of Applied Chemistry, Graduate Cource of Engineering, Tokyo Metropolitan University
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YUI Tatsuo
Department of Applied Chemistry, Graduate Cource of Engineering, Tokyo Metropolitan University
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Shiragami Tsutomu
Faculty Of Engineering Department Of Applied Chemistry University Of Miyazaki
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Takagi Katsuhiko
Department Of Applied Chemistry Nagoya University
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Takagi Katsuhiko
Department Of Applied Chemistry Faculty Of Engineering Nagoya University
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Nakashima Satoko
Department Of Applied Chemistry Faculty Of Engineering University Of Miyazaki
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Fujimura Takuya
Department Of Orthopaedic Surgery And Rheumatology Tokushima Kensei (co-op) Hospital
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Inokuchi Yousuke
Department Of Applied Chemistry Faculty Of Engineering University Of Miyazaki
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Fujimura Takuya
Department Of Applied Chemistry Graduate Course Of Urban Environmental Sciences Tokyo Metropolitan University
著作論文
- A UNIQUE "FLATTENING EFFECT" OF CLAY ON THE PHOTOCHEMICAL PROPERTIES OF METALLOPORPHYRINS(2010 TMC Special Paper)
- Roles of Axial Ligands on Intercalation of Cationic Metalloporphyrin into Smectite Clay Layers
- O-Alkylation of Dihydroxo(tetraarylporhyrinato)phosphorus(V) and Antimony(V) Complexes with Alkyl Halides
- Antimony porphyrin complexes as visible-light driven photocatalyst
- Effects of Axial Ligands on the Formation of a Layered Structure in Mono- and Di-Cationic Charged Tetraphenylporphyrinatoantimony(V)/Synthetic Clay Composites
- Efficient Photocatalytic Oxidation of Cycloalkenes by Dihydroxo(tetraphenylporphyrinato)-antimony Supported on Silica Gel under Visible Light Irradiation
- Non-aggregated Intercalation of Dicationic Tetraphenylporphyrinatoantimony(V) Complexes into Smectite Clay Layers
- Photochemical Electron Transfer from Hydroxide Ion to the Excited Triplet State of Tetraphenylporphyrinatoantimony(V) upon Visible Light Irradiation in Aqueous Acetonitrile
- Efficient Oxygenation of Alkene through Reductive Quenching of Excited Sb(V)tetraphenylporphyrin by Triphenylphosphine
- Intercalation of Metalloporphyrin-Surfactant Complex into Layered Niobate and the Photochemical Injection of Electrons to Niobate
- Dichroic Measurements on Dicationic and Tetracationic Porphyrins on Clay Surfaces with Visible-Light-Attenuated Total Reflectance
- Porphyrin photochemistry in inorganic/organic hybrid materials : Clays, layered semiconductors, nanotubes, and mesoporous materials
- Photochemical Electron Transfer Reactions in Clay-porphyrin Complexes(Characterization of Clays,Proceedings of the 13^ International Clay Conference)
- The Orientation Control of Dicationic Porphyrins on Clay Surfaces by Solvent Polarity
- Intercalation of Tris(2,2'-bipyridine)ruthenium(II) into a Layered Perovskite Derived from Aurivillius Phase Bi_2SrTa_2O_9
- Preparation and Characterization of a Transparent Thin Film of the Layered Perovskite, K_2La_2Ti_3O_, Intercalated with an Ionic Porphyrin
- Optically Transparent Thin Film of Layered Niobate (K_4Nb_6O_) Intercalated with Tris(2, 2'-bipyridyl)ruthenium(II)
- High Density Adsorption of Porphyrins onto Clay Layer without Aggregation: Characterization of Smectite-Cationic Porphyrin Complex
- WHAT LOWERS THE EFFICIENCY OF AN ENERGY TRANSFER REACTION BETWEEN PORPHYRIN DYES ON CLAY SURFACE?(TMC2010)