Kobayashi Shu | Graduate School Of Pharmaceutical Sciences The Univ. Of Tokyo The Hfre Div. Erato Japan Sci. And Tec
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概要
- KOBAYASHI Shuの詳細を見る
- 同名の論文著者
- Graduate School Of Pharmaceutical Sciences The Univ. Of Tokyo The Hfre Div. Erato Japan Sci. And Tecの論文著者
関連著者
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Kobayashi Shu
Graduate School Of Pharmaceutical Sciences The Univ. Of Tokyo The Hfre Div. Erato Japan Sci. And Tec
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Kobayashi Shu
Graduate School Of Pharmaceutical Science The University Of Tokyo Crest
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KOBAYASHI Shu
Graduate School of Pharmaceutical Sciences, The University of Tokyo, CREST
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Kobayashi Shu
Graduate School Of Pharmaceutical Sciences The University Of Tokyo
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Kobayashi S
Department Of Functional Polymer Science Faculty Of Textile Science And Technology Shinshu Universit
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MATSUO Jun-ichi
Graduate School of Pharmaceutical Sciences, The University of Tokyo, CREST
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TSUCHIYA Takehiro
Graduate School of Pharmaceutical Sciences, The University of Tokyo, CREST
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Yamashita Yasuhiro
Graduate School Of Pharmaceutical Sciences The University Of Tokyo Crest Japan Science And Technolog
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Matsuo Jun-ichi
Graduate School Of Pharmaceutical Sciences The University Of Tokyo
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Tsuchiya Takahiro
Department Of Chemistry Tokyo Gakugei University
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Yamashita Yasuhiro
Graduate School Of Pharmaceutical Sciences The University Of Tokyo
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Tsuchiya Takehiro
Graduate School Of Pharmaceutical Sciences The University Of Tokyo
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MANABE Kei
Graduate School of Pharmaceutical Sciences, The University of Tokyo and CREST, Japan Science and Tec
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Aoyama Naohiro
Graduate School Of Pharmaceutical Sciences The University Of Tokyo
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Ogawa Chikako
Graduate School Of Pharmaceutical Sciences The University Of Tokyo
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SUGIURA Masaharu
Graduate School of Pharmaceutical Sciences, The University of Tokyo
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HAGIO Hiroyuki
Graduate School of Pharmaceutical Sciences, The University of Tokyo
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Hagio Hiroyuki
Graduate School Of Pharmaceutical Sciences The University Of Tokyo
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Sugiura Masaharu
Graduate School Of Pharmaceutical Sciences The University Of Tokyo
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Manabe Kei
Graduate School Of Pharmaceutical Sciences The University Of Tokyo
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Nagayama Satoshi
Graduate School Of Pharmaceutical Sciences The University Of Tokyo Crest Japan Science And Technolog
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Hasegawa Yasuchika
Material And Life Science Graduate School Of Engineering Osaka University
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KAWADA Atsushi
Research & Development Laboratories, Nippon Steel Chemical Co. Ltd.
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MITAMURA Shuichi
Research & Development Laboratories, Nippon Steel Chemical Co. Ltd.
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ODASHIMA Mazunori
Graduate School of Pharmaceutical Sciences, The University of Tokyo
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BUSUJIMA Tsuyoshi
Graduate School of Pharmaceutical Sciences, The University of Tokyo, CREST, Japan Science and Techno
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Kobayashi S
Graduate School Of Pharmaceutical Sciences The University Of Tokyo And Crest Japan Science And Techn
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ISHITANI Haruro
Graduate School of Pharmaceutical Sciences, The University of Tokyo, CREST, Japan Science and Techno
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Kawada Atsushi
Research & Development Laboratories Nippon Steel Chemical Co. Ltd.
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AOYAMA Naohiro
Graduate School of Pharmaceutical Sciences, The University of Tokyo, The HFRE Division, ERATO, Japan
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Mitamura Shuichi
Research & Development Laboratories Nippon Steel Chemical Co. Ltd.
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Yamashita Y
Department Of Biotechnology Faculty Of Engineering Kansai University
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KOBAYASHI Jun
Graduate School of Pharmaceutical Sciences, The University of Tokyo
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Ishitani Haruro
Department Of Applied Chemistry Faculty Of Science Science University Of Tokyo (sut)
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Ishitani Haruro
Graduate School Of Pharmaceutical Sciences The University Of Tokyo Crest Japan Science And Technolog
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Busujima Tsuyoshi
Graduate School Of Pharmaceutical Sciences The University Of Tokyo Crest Japan Science And Technolog
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Odashima Mazunori
Graduate School Of Pharmaceutical Sciences The University Of Tokyo
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IIMURA Shinya
Graduate School of Pharmaceutical Sciences, The University of Tokyo and CREST, Japan Science and Tec
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Aoyama Naohiro
Graduate School Of Pharmaceutical Sciences The University Of Tokyo The Hfre Division Erato Japan Sci
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Wang Naiwei
Graduate School Of Pharmaceutical Sciences The University Of Tokyo The Hfre Division Erato Japan Sci
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OGAWA Chikako
Graduate School of Pharmaceutical Sciences, The University of Tokyo, The HFRE Division, ERATO, Japan
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Ogawa Chikako
Graduate School Of Pharmaceutical Sciences The University Of Tokyo The Hfre Division Erato Japan Sci
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Ogawa Chikako
Graduate School Of Pharmaceutical Sciences The University Of Tokyo The Hfre Division Erato Japan Sci
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SAGAE Takahiro
Graduate School of Pharmaceutical Sciences, The University of Tokyo
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Kobayashi Shu
Graduate School Of Pharmaceutical Sciences The University Of Tokyo The Hfre Division Erato Japan Sci
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Kobayashi Shu
Graduate School Of Pharmaceutical Sciences The University Of Tokyo The Hfre Division Erato Japan Sci
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HASEGAWA Yoshiki
Japan Science and Technology Corporation (JST)
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Sagae Takahiro
Graduate School Of Pharmaceutical Sciences The University Of Tokyo
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Kobayashi Shu
Graduate School Of Pharmaceutical Sciences The University Of Tokyo Crest Japan Science And Technolog
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Iimura Shinya
Graduate School Of Pharmaceutical Sciences The University Of Tokyo And Crest Japan Science And Techn
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Manabe K
Univ. Tokyo Tokyo
著作論文
- Friedel-Crafts Reactions Catalyzed by Rare Earth Metal Trifluoromethanesulfonates
- Lewis Acid Catalysis in Supercritical Carbon Dioxide.Use of Scandium Tris(heptadecafluorooctanesulfonate)as a Lewis Acid Catalyst in Diels-Alder and Aza Diels-Alder Reactions
- Chiral Lewis Acid Catalysis in Aqueous Media. Catalytic Asymmetric Aldol Reactions of Silyl Enol Ethers with Aldehydes in a Protic Solvent Including Water
- Silver or Copper Triflate - Catalyzed Amination of Silyl Enol Ethers
- Dehydrative Glycosylation in Water Using a Bronsted Acid-Surfactant-Combined Catalyst
- Direct Addition of Glycine Derivatives to Enamines
- Dehydration Reactions in Water. Surfactant-type Bronsted Acid-catalyzed Dehydrative Etherification, Thioetherification, and Dithioacetalization in Water
- Iron(III) Chloride as a Water-Compatible Lewis Acid for Diastereoselective Aldol Reactions in Water in the Presence of a Surfactant
- Chiral Scandium-catalyzed Highly Stereoselective Ring-opening of meso-Epoxides with Thiols
- Iron-catalyzed Direct-type Hydroxymethylation of 1,3-Dicarbonyl Compounds in Water
- Radical-mediated Carbonylation of Alkyl Iodides in Aqueous Media
- Platinum-catalyzed Amidocarbonylation
- Chiral Zirconium-Catalyzed Asymmetric Mannich-Type Reactions Using Acylhydrazones as Imine Equivalents