Self-assembly of a silica–surfactant nanocomposite in a porous alumina membrane

被引:0
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作者
Akira Yamaguchi
Fumiaki Uejo
Takashi Yoda
Tatsuya Uchida
Yoshihiko Tanamura
Tomohisa Yamashita
Norio Teramae
机构
[1] Graduate School of Science,Department of Chemistry
[2] Tohoku University,undefined
[3] Aoba-ku,undefined
[4] CREST,undefined
[5] Japan Science and Technology Agency (JST),undefined
[6] School of Life Science,undefined
[7] Tokyo University of Pharmacy and Life Science,undefined
[8] Research Institute for Electronic Science,undefined
[9] Hokkaido University,undefined
来源
Nature Materials | 2004年 / 3卷
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摘要
A mesoporous membrane composed of nanochannels with a uniform diameter has a potential use for precise size-exclusive separation of molecules. Here, we report a novel method to form a hybrid membrane composed of silica–surfactant nanocomposite and a porous alumina membrane, by which size-selective transport of molecules across the membrane becomes possible. The nanocomposite formed inside each columnar alumina pore was an assembly of surfactant-templated silica-nanochannels with a channel diameter of 3.4 nm; the channel direction being predominantly oriented along the wall of the columnar alumina pore. Molecules could be transported across the membrane including the silica–surfactant nanocomposite with a capability of nanometre-order size-exclusive separation. Our proposed membrane system has a potential use not only for separation science, but also catalysis and chip technologies.
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页码:337 / 341
页数:4
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