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烷基取代的立方倍半硅氧烷笼自组装成有序杂化材料。

Self-assembly of alkyl-substituted cubic siloxane cages into ordered hybrid materials.

作者信息

Shimojima Atsushi, Goto Ryota, Atsumi Norimasa, Kuroda Kazuyuki

机构信息

Department of Chemical System Engineering, The University of Tokyo, Hongo-3, Bunkyo-ku, Tokyo, Japan.

出版信息

Chemistry. 2008;14(28):8500-6. doi: 10.1002/chem.200801106.

Abstract

Siloxane-organic hybrids with well-ordered mesostructures were synthesized through the self-assembly of novel amphiphilic molecules that consist of cubic siloxane heads and hydrophobic alkyl tails. The monoalkyl precursors functionalized with ethoxy groups (C(n)H(2n+1)Si(8)O(12)(OEt)(7), 1 Cn, n=16, 18, and 20) were hydrolyzed under acidic conditions with the retention of the siloxane cages, leading to the formation of two-dimensional hexagonal phases by evaporation-induced self-assembly processes. Analysis of the solid-state (29)Si MAS NMR spectra of these hybrid mesostructures confirmed that the cubic siloxane units were cross-linked to form siloxane networks. Calcination of these hybrids gave mesoporous silica, the pore diameter of which varied depending on the alkyl-chain length. We also found that the precursors that had two alkyl chains formed lamellar phases, thus confirming that the number of alkyl chains per cage had a strong influence on the mesostructures. These results expand the design possibility of novel nanohybrid and nanoporous materials through the self-assembly of well-defined oligosiloxane-based precursors.

摘要

通过由立方硅氧烷头部和疏水烷基尾部组成的新型两亲分子的自组装,合成了具有有序介观结构的硅氧烷 - 有机杂化物。用乙氧基官能化的单烷基前体(C(n)H(2n + 1)Si(8)O(12)(OEt)(7),1 Cn,n = 16、18和20)在酸性条件下水解,同时保留硅氧烷笼,通过蒸发诱导自组装过程形成二维六方相。对这些杂化介观结构的固态(29)Si MAS NMR光谱分析证实,立方硅氧烷单元交联形成硅氧烷网络。这些杂化物的煅烧得到介孔二氧化硅,其孔径根据烷基链长度而变化。我们还发现具有两条烷基链的前体形成层状相,从而证实每个笼中烷基链的数量对介观结构有很大影响。这些结果通过明确的基于低聚硅氧烷的前体的自组装,扩展了新型纳米杂化材料和纳米多孔材料的设计可能性。

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