Coating of Transparent Ti-containing Mesoporous Silica Thin Films on Quartz and Aluminum Alloy Substrates for Fabrication of Highly Hydrophilic Surfaces
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概要
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The fabrication of transparent Ti-containing mesoporous silica thin films (Ti-MSTFs) showing highly hydrophilic properties was achieved on quartz and Al alloy substrates by using a sol–gel/spin-coating technique. The presence of the mesoporous structure and titanium oxide species which exist in an isolated and tetrahedrally-coordinated state within the silica framework was observed by XRD and DRUV–vis measurements. The surface wettability on the Ti-MSTFs was also investigated based on the water contact angle measurement. Water contact angles on Ti-MSTFs on quartz and Al alloy substrates were extremely low values of 5° and 8° even under dark conditions, respectively, which were much smaller than those on original substrates. These observations indicate that highly hydrophilic surfaces were formed both on quartz and Al alloy substrates by coating with Ti-MSTFs. It can be interpreted that the capillary condensation due to the mesoporous structure and the presence of isolated titanium oxide species as adsorption sites of water contributed to the appearance of the high hydrophilicity. Furthermore, the irradiation of UV-light led to the decrease in water contact angles on Ti-MSTFs and it was found that Ti-MSTFs exhibited the photoinduced superhydrophilic properties.
- 2010-02-15
著者
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Mori Kohsuke
Divisions Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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Mori Kohsuke
Division Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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Mori Kohsuke
Div. Of Materials And Manufacturing Sci. Graduate School Of Engineering Osaka Univ.
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YAMASHITA Hiromi
Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University
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Nishiyama Norikazu
Department Of Materials Engineering Science Graduate School Of Engineering Science Osaka University
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KAMEGAWA Takashi
Divisions of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University
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HORIUCHI Yu
Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University
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Yamashita Hiromi
Divisions Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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Yamashita Hiromi
Division Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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Kamegawa Takashi
Divisions Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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Kamegawa Takashi
Division Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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Yamashita Hiromi
Div. Of Materials And Manufacturing Sci. Graduate School Of Engineering Osaka Univ.
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URA Haruhisa
Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University
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YOO Hye-jin
Surface Technology Research Group, POSCO Technical Research Laboratories
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Yoo Hye-jin
Surface Technology Research Group Posco Technical Research Laboratories
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Ura Haruhisa
Division Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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Horiuchi Yu
Division Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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Nishiyama Norikazu
Department Of Materials Engineering Science Graduate School Of Engineering Science
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