Kamiya Yoshio | Department of Applied Chemistry Faculty of Engineering The University of Tokyo
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概要
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- 同名の論文著者
- Department of Applied Chemistry Faculty of Engineering The University of Tokyoの論文著者
関連著者
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Kamiya Yoshio
Department of Applied Chemistry Faculty of Engineering The University of Tokyo
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Niki Etsuo
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Yamamoto Yorihiro
Department Of Bionics Tokyo University Of Technology
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Futamura Shigeru
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Sodesawa Toshiaki
Department Of Applied Chemistry Faculty Of Engineering Chiba University
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Yamada Teruaki
Department of Chemistry, Faculty of Science, Hokkaido University
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Saito Tsuneo
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Kamiya Yoshio
Department of Reaction Chemistry, Faculty of Engineering, University of Tokyo
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Ogata Eisuke
Department of Reaction Chemistry, Faculty of Engineering, University of Tokyo
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Kawakami Akira
Department Of Electrical Engineering Technological University Of Nagaoka
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Ohta Hiroyuki
Department Of Biological Sciences Graduate School Of Bioscience And Biotechnology Tokyo Institute Of
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Kamiya Yoshio
Department Of Industrial Chemistry Science University Of Tokyo
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OKADA Toshihiko
Department of Biochemistry and Kanazawa Medical Universit
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Tsuchiya Jyunichi
Department of Reaction Chemistry, Faculty of Engineering, University of Tokyo
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Okada Toshihiko
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Yoshikawa Yasuyuki
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Shiono Takeo
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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NAKANO Hiroshi
Department of Internal Medicine, Fujita-Gakuen Health University School of Medicine
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OHTA Yoshiji
Department of Chemistry, Fujita Health University School of Medicine
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今井 淑夫
Division Of Pathology National Institute Of Health Sciences
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今井 淑夫
東京工業大学部有機材科工学科
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今井 淑夫
元 東京工業大学工学部有機材料工学科
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Imai Yoichiro
Department Of Clinical Biochemistry Fujita Health University College
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Ohta Yoshiji
Department Of Chemistry School Of Medicine Fujita Health Univeisity
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Ohta Yoshiji
Department Of Biochemistry School Of Medicine Fujita Health University
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KAMIYA Yoshio
Department of Internal Medicine, School of Medicine, Fujita Health University
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ARISAWA Tomiyasu
Department of Internal Medicine, School of Medicine, Fujita Health University
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Yamazaki Kazuhiro
Department of Cardiovascular Surgery, Graduate School of Medicine, Kyoto University
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Nakano Hiroshi
Department Of Clinico-laboratory Diagnostics Nara Medical University
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今井 淑夫
東京工業大学
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Kamiya Yoshio
Department Of Internal Medicine School Of Medicine Fujita Health University
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Kumasaka Akira
Department Of Oral And Maxillofacial Surgery School Of Medicine Tokyo Women's Medical Universit
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Arisawa T
Department Of Gastroenterology Kanazawa Medical University
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HAMA Takashi
Department of Industrial Chemistry, Science University of Tokyo
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KIJIMA Ichiro
Department of Industrial Chemistry, Science University of Tokyo
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Hama Takashi
Department Of Industrial Chemistry Science University Of Tokyo
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Kijima Ichiro
Department Of Industrial Chemistry Science University Of Tokyo
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Kamiya Y.
Department of Biochemistry, School of Medicine, Kanazawa University
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Nakano Hiroshi
Department Of Anesthesia Okazaki City Hospital
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Nakano Hiroshi
Department Of Internal Medicine School Of Medicine Fujita Health University
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Saito Mitsuo
Department Of Gastroenterological Surgery School Of Medicine Showa University Fujigaoka Hospital
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ARISAWA Tomiyasu
Department of Gastroenterology, Kanazawa Medical University
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Kotake Masayoshi
Department of Reaction Chemistry, Faculty of Engineering, University of Tokyo
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Takahashi Mareyuki
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Yoshikawa Yasuyuki
Department of Reaction Chemistry, Faculty of Engineering, University of Tokyo, Hongo
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Niki Etsuo
Department of Reaction Chemistry, Faculty of Engineering, University of Tokyo, Hongo
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Yamazaki Kazuhiro
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Yamada Teruaki
Department of Reaction Chemistry, Faculty of Engineering, University of Tokyo
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Yamada Teruaki
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Nagano Keiji
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Yokoi Seiichi
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Niki Etsuo
Department of Reaction Chemistry, Faculty of Engineering, University of Tokyo
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Kamiya Yoshio
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Kamiya Yoshio
Department of Fuel Engineering, Faculty of Engineering, The University of Tokyo
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Haga Shunichi
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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MUTO Shigeaki
Department of Cardiology and Kidney Center, Jichi Medical School
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Yamamoto Yorihiro
Department of Reaction Chemistry, Faculty of Engineering, University of Tokyo
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Saeki Noriyuki
Department of Reaction Chemistry, Faculty of Engineering, University of Tokyo
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Haga Schunichi
Department of Reaction Chemistry, Faculty of Engineering, University of Tokyo
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Tanaka Kunihiko
Sumitomo Chemical Co., Ltd.
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Tanimura Ritsuko
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Mizuki Tatsuro
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Tasaka Kazuaki
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
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Hasegawa Ryoichi
Department of Reaction Chemistry, Faculty of Engineering, The University of Tokyo
著作論文
- A Change in Gastric Mucosal Ascorbic Acid Status with the Formation, Progression, and Recovery of Compound 48/80-induced Acute Gastric Mucosal Lesions in Rats
- Formation of 2,6-Naphthalenedicarboxylic Acid by the Co-Mn-Br-Catalyzed Autoxidation of 2,6-Diethylnaphthalene in Acetic Acid
- Formation of Benzenecarboxylic Acids from Bituminous Coal by Means of Oxygen-oxidation in Alkaline Medium
- Ozonization of organic compounds. VI. Relative reactivity of protic solvents toward carbonyl oxide.
- Phenolic solvent-assisted hydrogenolysis of trans-stilbene.
- Photoinduced electron transfer oxidation. I. 9,10-Dicyanoanthracene-sensitized photooxidation of hindered phenols.
- Spectrophotometric study on the complex formation of hydroperoxide with tetraphenylporphyrin cobalt(II).
- Interaction of galvinoxyl radical with ascorbic acid, cysteine, and glutathione in homogeneous solution and in aqueous dispersions.
- Ligand effects of 2,2'-bipyridine in the decomposition of 1,2,3,4-tetrahydro-1-naphthyl hydroperoxide catalyzed by cobalt(II) salt.
- Ozonization of organic compounds. VII. Carboxylic acids, alcohols, and carbonyl compounds.
- Ozonization of organic compounds. V. Aromatic compounds.
- The liquid-phase oxidation of methylbenzenes by the cobalt-copper-bromide system.
- Oxidation of lipids. XIII. Antioxidant activities of .ALPHA.-, .BETA.-, .GAMMA.-, and .DELTA.-tocopherols.
- The oxidation of toluene by cobalt-copper-bromide system. A side-chain acetoxylation.
- Oxidation of lipids. I. Quantitative determination of the oxidation of methyl linoleate and methyl linolenate.
- Oxidation of lipids. V. Oxidation of methyl linoleate in aqueous dispersion.
- The Metal-Catalyzed Autoxidation of Cumene
- Oxidative degradation of polymers. V. Ozonization of polypropylene and polystyrene in carbon tetrachloride.
- Oxidation of lipids. XII. Inhibition of oxidation of soybean phosphatidylcholine and methyl linoleate in aqueous dispersions by uric acid.
- Oxidation of lipids. IX. Decomposition of methyl linoleate and methyl linolenate hydroperoxides in solution.
- Oxidation of lipids. XIV Inhibition of oxidation of methyl linoleate by fatty acid esters of L-ascorbic acid.
- Oxidation of lipids. II. Rate of inhibition of oxidation by .ALPHA.-tocopherol and hindered phenols measured by chemiluminescence.
- Oxidation of lipids. VIII. Synergistic inhibition of oxidation of phosphatidylcholine liposome in aqueous dispersion by vitamin E and vitamin C.
- A study of the color of coal liquids. II Involvement of light, oxygen, phenols, and aromatic amines in formation of colored materials from Wandoan-coal-derived liquids.
- The photocycloaddition of 6-substituted phenanthridines to electron-rich olefins.
- Oxidative degradation of polymers. VI. Photooxidation of polystyrene powder and some model compounds.
- Liquid phase disproportionation of propylene over MoO3-Al2O3 catalyst in the presence of solvents.
- Effects of pressure on the disproportionation of olefins over MoO3-Al2O3 and Re2O7-Al2O3 catalysts.
- Disproportionation of propylene over MoO3-SiO2 catalyst with various treatments.
- Reaction of dioxygen complexes with catechols.
- Studies on the liquid phase oxidation of nitroalkylbenzenes catalyzed by transition metal and bromide ions.
- Autoxidation of atactic polypropylene and related alkanes. Rates and reactivities toward peroxy radicals.
- Catalysis of Manganese Salts in the Autoxidation of Cyclohexanone