ZHANG Zhi-Yi | Department of Chemical Science and Technology, Faculty of Engineering, Kyushu University
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概要
- ZHANG Zhi-Yiの詳細を見る
- 同名の論文著者
- Department of Chemical Science and Technology, Faculty of Engineering, Kyushu Universityの論文著者
関連著者
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ZHANG Zhi-Yi
Department of Chemical Science and Technology, Faculty of Engineering, Kyushu University
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Zhang Zhi-yi
Department Of Chemical Science And Technology Faculty Of Engineering Kyushu University
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Murakami Y
Univ. Tsukuba Ibaraki
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Murakami Y
Institute For Fundamental Research In Organic Chemistry Kyushu University
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Murakami Y
Department Of Chemical Science And Technology Faculty Of Engineering Kyushu University
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KIKUCHI Jun-ichi
Institute for Fundamental Research in Organic Chemistry, Kyushu University
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MURAKAMI Yukito
Institute for Fundamental Research in Organic Chemistry, Kyushu University
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Kikuchi J
Univ. Tokyo Tokyo
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Kikuchi Jun-ichi
Institute For Fundamental Research In Organic Chemistry Kyushu University
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Murakami Yukito
Institute For Fundamental Research In Organic Chemistry Kyushu University
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Murakami Y
Department Of Applied Chemistry School Of Engineering Nagoya University
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MIYAJIMA Tetsuya
Department of Chemical Science and Technology, Faculty of Engineering, Kyushu University
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Zhang Zhi-yi
Department Of Environmental Health And Toxicology School Of Public Health State University At Albany
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Kaminsky Laurence
Department Of Environmental Health And Toxicology School Of Public Health State University At Albany
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FASCO Michael
Department of Environmental Health and Toxicology, School of Public Health, State University at Alba
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Fasco Michael
Department Of Environmental Health And Toxicology School Of Public Health State University At Albany
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Miyajima Tohru
Department Of Chemistry Faculty Of Science And Engineering Saga University
著作論文
- Enantioselective Catalysis Performed by Bilayer-type Artificial Aminotransferase. Effect of a Chiral Binaphthol Moiety Placed in the Reaction Site
- Enantioselective Catalysis by Supramolecular Bilayer Membrane as Artificial Aminotransferase
- Determination of theophylline and its metabolites in rat liver microsomes and human urine by capillary electrophoresis