High-Quality LB Films of Artificial Dialkyl Lipid
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概要
- 論文の詳細を見る
- 社団法人応用物理学会の論文
- 1987-11-20
著者
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Ariga K
Supermolecules Project Jst(former Jrdc) Kurume Research Park
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Ariga Katsuhiko
Supermolecules Project Jrdc Kurume Research Park
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Ariga K
Tokyo Inst. Technol. Yokohama
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Ariga Katsuhiko
Fuel Cell Materials Center National Institute For Materials Science
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Ariga Katsuhiko
Advanced Materials Laboratory National Institute For Materials Science
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Ariga Katsuhiko
Supermolecules Project Jrdc
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Ariga Katsuhiko
Department Of Biomolecular Engineering Tokyo Institute Of Technology
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OKAHATA Yoshio
Department of Biomolecular Engineering, Tokyo Institute of Technology
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Onoue Yoichi
International Cooperation Center For Science And Technology Tokyo Institute Of Technology
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Okahata Yoshio
Department Of Biomolecular Engineering And Frontier Collaborative Research Center Tokyo Institute Of
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Okahata Yoshio
Department Of Polymer Chemistry Faculty Of Engineering Tokyo Institute Of Technology
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MORIIZUMI Toyosaka
International Cooperation Center for Science and Technology, Tokyo Institute of Technology
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Moriizumi Toyosaka
International Cooperation Center For Science And Technology Tokyo Institute Of Technology
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Okahata Yoshio
Department of Applied Chemistry, Kyushu University 36
関連論文
- Chemically Nonequivalent Sites in Mesoporous BCN Revealed by Solid-state NMR at 21.8T
- Enzymatic Syntheses of Glycolipids Catalyzed by a Lipid-coated Glycoside Hydrolase in the Organic-Aqueous Two Phase System
- A QCM Study on Adsorption of Macrocyclic Sugar-Cluster to Variously-Functionalized Monolayers
- Quantitative Detection of Protein Binding onto DNA by Using a Quartz-Crystal Microbalance
- Inhibition of 2, 7-Dideoxy -7-fluoro-2, 3-didehydrosialic Acid for Binding of Influenza Virus Hl Hemagglutinin to GM3
- Formation of a DNA/polygalactosamine Complex and Its Interaction with Cells
- Preparation and Characterization of DNA-Lipoglutamate Complexes
- Persistent Spectral Hole Burning for a Free-Base Porphyrin Doped in a DNA-Lipid Complex Film
- Effect of Lipid Molecules on Twisting Motions of DNA Helix Studied by Fluorescence Polarization Anisotropy
- A Theoretical Interpretation of Remarkable Enhancement of Intermolecular Binding at the Lipid-Water Interface