Kakehi Hiroshi | Department Of Frontier Materials Chemistry Graduate School Of Science And Technology Hirosaki Univer
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概要
- Kakehi Hiroshiの詳細を見る
- 同名の論文著者
- Department Of Frontier Materials Chemistry Graduate School Of Science And Technology Hirosaki Univerの論文著者
関連著者
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SAWADA Hideo
Department of Frontier Materials Chemistry, Graduate School of Science and Technology, Hirosaki Univ
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KAKEHI Hiroshi
Department of Frontier Materials Chemistry, Graduate School of Science and Technology, Hirosaki Univ
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Isu Norifumi
Inax Corporation R & D Center
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Sawada Hideo
Department Of Frontier Materials Chemistry Graduate School Of Science And Technology Hirosaki Univer
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Muira Masashi
Inax Corporation R & D Center
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Kakehi Hiroshi
Department Of Frontier Materials Chemistry Graduate School Of Science And Technology Hirosaki Univer
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Sawada Hideo
Department Of Frontier Materials Chemistry Faculty Of Science And Technology Hirosaki University
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SAWADA Hideo
Department of Biochemistry, Gifu College of Pharmacy
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TASHIMA Tsukasa
Department of Frontier Materials Chemistry, Graduate School of Science and Technology, Hirosaki Univ
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NISHIYAMA Yusuke
JEOL Ltd
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KIKUCHI Mieko
Department of Frontier Materials Chemistry, Graduate School of Science and Technology, Hirosaki Univ
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MIURA Masashi
INAX Corporation, R & D Center
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SATO Yusuke
INAX Corporation, R & D Center
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ISU Norifumi
INAX Corporation, R & D Center
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Kikuchi Mieko
Department Of Frontier Materials Chemistry Graduate School Of Science And Technology Hirosaki Univer
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MUIRA Masashi
General Research Institute of Technology, INAX Corporation
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ISU Norifumi
General Research Institute of Technology, INAX Corporation
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Tashima Tsukasa
Department Of Frontier Materials Chemistry Graduate School Of Science And Technology Hirosaki Univer
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Sato Yusuke
Inax Corporation R & D Center
著作論文
- Fluoroalkyl end-capped oligomers possessing nonflammable and flammable characteristics in silica gel matrices after calcination at 800℃ under atmospheric conditions
- Surface Modification of Aluminum Plate with Fluoroalkyl End-capped Acrylic Acid Oligomer/silica Nanocomposites : Oleophobic to Hydrophilic Switching Behavior Adapted to the Environmental Change on the Modified Plate Surface