Tanabe S | Faculty Of Engineering Nagasaki University
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概要
関連著者
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Matsumoto H
Faculty Of Engineering Nagasaki University
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TANABE Shuji
Faculty of Engineering, Nagasaki University
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Handa Makoto
Department Of Chemistry Faculty Of Science Shimane University
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興津 健二
大阪府立大学
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Tanabe S
Faculty Of Engineering Nagasaki University
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Okitsu Kenji
Department Of Nuclear Engineering Osaka University
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Morishita Hiroaki
Department Of Chemistry School Of Science Kwansei Gakuin University
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TANABE Shuji
Department of Materials Science and Engineering, Faculty of Engineering, Nagasaki University
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Tanabe Shuji
Department of Chemistry, Faculty of Liberal Arts, Nagasaki University
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MATSUMOTO Hiroshige
Faculty of Engineering, Nagasaki University
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OKITSU Kenji
Department of Materials Science and Engineering, Faculty of Engineering, Nagasaki University
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MATSUMOTO Hiroshige
Department of Materials Science and Engineering, Faculty of Engineering, Nagasaki University
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Matsumoto Hiroshige
Department Of Applied Chemistry Faculty Of Engineering Kyushu University
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Okitsu Kenji
Department Of Applied Materials Science College Of Engineering University Of Osaka Prefecture
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OKITSU Kenji
Faculty of Engineering, Nagasaki University
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Handa M
Department Of Material Science Interdisciplinary Faculty Of Science And Engineering Shimane Universi
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YUE Akihiko
Faculty of Engineering, Nagasaki University
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Yue Akihiko
Faculty Of Engineering Nagasaki University
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Okitsu K
Department Of Nuclear Engineering Osaka University
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興津 健二
大阪府立大学大学院工学研究科
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Matsumoto H
Department For Energy Conversion Osaka National Research Institute
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Nagaoka S
Kumamoto Industrial Res. Inst. Kumamoto
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Nagaoka Shinya
Faculty Of Engineering Nagasaki University
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Maeda Y
Osaka Prefecture Univ. Osaka
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MAEDA Yasuaki
College of Engineering, Osaka Prefecture University
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YOO Youngeok
Department of Applied Materials Science, College of Engineering, University of Osaka Prefecture
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NAGATA Yoshio
Research Institute for Advanced Science and Technology, University of Osaka Prefecture
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Murakami Masatoshi
Faculty Of Engineering Nagasaki University
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OKITSU Kenji
Japan Science and Technology Corporation
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YOBIKO Yoshihiro
Technology Research Institute of Osaka Prefecture
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MATSUGUMA Hiroshi
Department of Materials Science and Engineering, Faculty of Engineering, Nagasaki University
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HAYASHI Yuji
Department of Materials Science and Engineering, Faculty of Engineering, Nagasaki University
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SUIB Steven
Department of Chemistry, Connecticut University
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EGASHIRA Kayo
Department of Materials Science and Engineering, Faculty of Engineering, Nagasaki University
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MIZUKOSHI Yoshiteru
College of Engineering, Osaka Prefecture University
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MIZUSHIMA Takanori
Department of Material Science, Toyohashi University of Technology
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OKITSU Kenji
College of Engineering, University of Osaka Prefecture
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Egashira Kayo
Department Of Materials Science And Engineering Faculty Of Engineering Nagasaki University
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Hayashi Yuji
Department Of Internal Medicine Kinan Hospital
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Mizukoshi Yoshiteru
College Of Engineering Osaka Prefecture University
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Suib S
Univ. Connecticut Connecticut Usa
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Yoo Youngeok
Department Of Environmental Education Daegu University
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Nagata Yoshio
Research Institute For Advanced Sciemce And Technology University Of Osaka Prefecture
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Nagata Yoshio
Research Institute Of Advanced Science And Technology Osaka Prefecture University
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Suib Steven
Department Of Chemistry Connecticut University
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Maeda Yasuaki
College Of Engineering University Of Osaka Prefecture
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Mizushima Takanori
Department Of Material Science Toyohashi University Of Technology
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Hayashi Yuji
Department Of Materials Science And Engineering Faculty Of Engineering Nagasaki University
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Tanabe Shunji
Faculty of Engineering, Nagasaki University
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Hayashi Yuji
Department of Chemistry, Faculty of Science, Osaka City University
著作論文
- Catalytic Behavior of Au Core/Pd Shell Bimetallic Nanoparticles on Silica Prepared by Sonochemical and Sol-Gel Processes
- Sonolytic Control of Rate of Gold (III) Reduction and Size of Formed Gold Nanoparticles : Relation between Reduction Rates and Sizes of Formed Nanoparticles
- Formation of Palladium Nanoclusters on Y-Zeolite via a Sonochemical Process and Conventional Methods
- Generation of Hydrogen from Methanol in a Dielectric - Barrier Discharge - Plasma System
- Profiles of Carbon Dioxide Decomposition in a Dielectric-Barrier Discharge-Plasma System
- Partial Oxidation of Methane with Nitrous Oxide in a Dielectric-Barrier Discharge System
- Profiles of Methane Dimerization with a Glow Discharge Plasma System
- Sonochemical Preparation of Size - Controlled Palladium Nanoparticles on Alumina Surface
- Preparation of Finely Dispersed-Palladium Metal in Zeolite by High Frequency-Ultrasonic Irradiation