Sekiguchi Shizen | Department of Chemistry, Faculty of Engineering, Gunma University
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概要
- Sekiguchi Shizenの詳細を見る
- 同名の論文著者
- Department of Chemistry, Faculty of Engineering, Gunma Universityの論文著者
関連著者
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Sekiguchi Shizen
Department of Chemistry, Faculty of Engineering, Gunma University
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Matsui Kohji
Department of Chemistry, Faculty of Engineering, Gunma University
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Hashida Yoji
Department of Chemistry, Faculty of Engineering, Gunma University
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Fukushima Yoshiaki
Department of Chemistry, Gunma University
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Tomoto Noboru
Department of Chemistry, Miyazaki University
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Nakamura Kenji
Department Of Anatomy Graduate School Of Medicine Osaka City University
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Hirai Motohiko
Department of Synthetic Chemistry, Gunma University
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Tomoto Noboru
Faculty of Engineering, Miyazaki University
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Fujiu Tomohisa
Department of Synthetic Chemistry, Faculty of Engineering, Gunma University
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Mitsumura Kazuo
Department of Chemistry, Faculty of Engineering, Gunma University
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Takei Toshio
Department of Applied Chemistry, College of Engineering, University of Osaka Prefecture
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Tone Noboru
Department of Synthetic Chemistry, Gunma University
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SUZUKI TOHRU
Department of Chemical Engineering, Faculty of Engineering, Nagoya University
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Izumi Kazuo
Department Of Internal Medicine Matsusaka Chuo Hospital
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Itagaki Takeshi
Department Of Cardiology Shizuoka Prefectual General Hospital
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Hasegawa Yasushi
Department Of Applied Chemistry Muroran Institute Of Technology
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Ando Yumiko
Department Of Radiology Nishibeppu National Hospital
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Hirose Akiko
Department Of Pediatrics And Child Health Maternal And Perinatal Medical Center Kurume University Sc
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Nagai Takeshi
Department Of Applied Chemistry School Of Science And Engineering Waseda University
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Shizuka Haruo
Deparment Of Chemistry Faculty Of Engineering Gunma University
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Kumagai Akio
Department Of Chemistry And Material Engineering Faculty Of Engineering Shinshu University
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Sato Mitsuo
Department Of Applied Chemistry Faculty Of Engineering Gunma University
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Okada Keiji
Department Of Chemistry Faculty Of Science Osaka University
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Takahashi Hiroyuki
Department Of Applied Chemistry Faculty Of Science And Technology Keio University
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Ishida Hiroki
Department of Chemistry and Biochemistry, Graduate School of Engineering,, Kyushu University
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Inoue Yukio
Department of Electrical and Electronic Engineering, Faculty of Engineering, The University of Tokushima
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SHIMIZU HIROSHI
Department of Anatomy, School of Medicine, Tokushima University
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KURODA Toshio
Department of Cardiology, Jichi Medical School
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Hoshino Ohtomo
Department of Synthetic Chemistry, Gunma University
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Ishida Hiroki
Department of Chemistry, Faculty of Engineering, Gunma University
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Matsui Kohji
Department of Synthetic Chemistry, Faculty of Engineering, Gunma University
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Matsui Kohji
Department of Synthetic Chemistry, Gunma University
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Sekiguchi Shizen
Department of Synthetic Chemistry
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Sekiguchi Shizen
Department of Synthetic Chemistry, Gunma University
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Sekiguchi Shizen
Department of Synthetic Chemistry, Faculty of Engineering, Gunma University
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Kubota Kazuhiro
Department of Chemistry, Faculty of Engineering, Gunma University
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Sato Mitsuo
Department of Synthetic Chemistry, Gunma University
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Fukushima Yoshiaki
Department of Synthetic Chemistry, Gunma University
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Fukushima Yoshiaki
Department of Synthetic Chemistry, Faculty of Engineering, Gunma University
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Ishida Sadahiro
Department of Chemistry, Gunma University
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Tomoto Noboru
Department of Synthetic Chemistry, Gunma University
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Nohara Noboru
Department of Synthetic Chemistry, Faculty of Engineering, Gunma University
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Ando Yumiko
Department of Synthetic Chemistry, Gunma University
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Hikage Reiko
Department of Synthetic Chemistry, Gunma University
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Obana Kenmi
Department of Synthetic Chemistry, Gunma University
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Fujinuma Hajime
Department of Synthetic Chemistry, Gunma University
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Kumagai Akio
Department of Chemistry, Gunma University
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Itagaki Takeshi
Department of Synthetic Chemistry, Gunma University
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Takei Toshio
Department of Synthetic Chemistry, Gunma University
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Uno Seiichi
Department of Chemistry, Faculty of Engineering, Gunma University
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Tsutsumi Kinzo
Department of Synthetic Chemistry, Gunma University
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Mitsumura Kazuo
Department of Synthetic Chemistry, Faculty of Engineering, Gunma University
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Hasegawa Yasushi
Department of Synthetic Chemistry, Gnnma University
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Yamada Hideo
Department of Synthetic Chemistry, Faculty of Engineering, Gunma University
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Yamada Hideo
Department of Chemistry, Gunma University
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Nagahama Kensuke
Department of Synthetic Chemistry, Gnnma University
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Shiojima Takeo
Department of Chemistry, Faculty of Engineering, Gunma University
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Suzuki Tohru
Department of Synthetic Chemistry, Gunma University
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Nagai Takeshi
Department of Synthetic Chemistry, Gunma University
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Nakamura Kenji
Department of Synthetic Chemistry, Gnnma University
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Nakamura Kenji
Department of Synthetic Chemistry, Gunma University
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Tsunoda Shigeo
Department of Chemistry, Faculty of Engineering, Gunma University
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Shiojima Takeo
Department of Synthetic Chemistry, Gunma University
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Hosokawa Masaru
Department of Synthetic Chemistry, Gunma University
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Kato Sadanobu
Department of Synthetic Chemistry, Gunma University
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Hiraide Takao
Department of Synthetic Chemistry
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Hashida Yohji
Department of Synthetic Chemistry
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Yasuraoka Yoshihiro
Department of Synthetic Chemistry, Faculty of Engineering, Gunma University
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Nohara Noboru
Department of Chemistry, Faculty of Engineering, Gunma University
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Uno Seiichi
Department of Synthetic Chemistry, Gunma University
著作論文
- Phase-transfer-catalyzed azo coupling reactions in two-phase systems.
- Solvent Effects in Diazo-coupling Reactions
- Rearrangement of 2-Aryloxybenzazoles
- Tris(benzimidazo)-1,3,5-triazine from the Thermolysis of 2-Aryloxybenzimidazoles
- Aromatic nucleophilic substitution. XVII. Formation and decomposition of anionic .SIGMA. complexes in reactions of 2-acetylaminoethyl 2,6-dinitrophenyl ether and N-acetyl-N-(2-hydroxyethyl)-2,6-dinitroaniline with potassium t-butoxide.
- Derivatives of Ditriazinylamine
- Aromatic nucleophilic substitution. XIII. Confirmation of the anionic .SIGMA. complexes in the reactions of 2,4-dinitro- and 2,4,5-trinitro-1-(1-piperidyl)naphthalenes with piperidine in dimethyl sulfoxide.
- Reactions of Diazomethyl-1,3,5-triazines with Cyclohexane
- The Effect of Acylamino Groups in Diazo-coupling Reactions
- Aromatic nucleophilic substitution. VII. Electronic structure of 1,1-disubstituted 2,4-dinitronaphthalene Meisenheimer complexes.
- Ring-opening reactions of cyclic ethers. IX. Molecular weight distribution of adducts in the acid- catalyzed reactions of epichlorohydrin with alcohols.
- The Diazo-coupling Reaction of Phenol in Organic Solvents. The Isomer Ratio
- Studies of Azo Colors. XI. The Diazo-coupling Reaction of Pyrroles
- Aromatic nucleophilic substitution. XV. Stopped-flow kinetics of the formation and decomposition of 1,3- and 1,1-disubstituted Meisenheimer complexes in the reactions of 1-dialkylamino-2,4-dinitronaphthalenes with potassium methoxide in dimethyl sulfoxide
- Aromatic Nulceophilic Substitution. I. Preparation of Spiro Meisenheimer Complexes of Arenes
- Aromatic nucleophilic substitution. XVIII. Kinetics of reactions of 2-(acetylamino)ethyl 2,6-dinitrophenyl ether and N-acetyl-N-(2-hydroxyethyl)-2,6-dinitroaniline with sodium isopropoxide.
- Aromatic nucleophilic substitution. 25. Stopped-flow kinetics of reactions of 1-ethoxy-2,4-dinitronaphthalene with pyrrolidine and piperidine in dimethyl sulfoxide solution.
- Reactions of azoxybenzene with dichlorocarbene in the phase-transfer-catalyzed system.
- N2→N1 Migration of s-Triazinyl Group in the Reaction of N-Acetyl-N2-(s-triazinyl)alkylenediamines
- Aromatic Nitration. II. Competitive Nitration of Toluene and Benzene in Organic Solvents
- The reactions of 2-substituted 4-chloro-6-(2-hydroxy-1-naphthyl)-1,3,5-triazines with several nucleophiles.
- Aromatic nucleophilic substitution. XVI. Stopped-flow kinetics of formation and decomposition of 1,3- and 1,1-disubstituted anionic .SIGMA. complexes in reactions of 1-dimethylamino-2,4-dinitronaphthalene with potassium alkoxides in dimethyl sulfoxide-alc
- Aromatic nucleophilic substitution. 24. Stopped-flow kinetics of the formation and decomposition of 2,4- and 4,4-disubstituted Meisenheimer complexes in the reaction of 4-piperidino-1,3-dinitrophenanthrene with potassium methoxide in dimethyl sulfoxide-me
- Reaction of azobenzene with dichlorocarbene in phase-transfer-catalyzed system.
- Ring-opening Reactions of Cyclic Ethers. VIII. Acid-catalyzed Ring-opening Reactions of Isobutylene Oxide in Alcohols