Shimojima Atsushi, Liu Zheng, Ohsuna Tetsu, Terasaki Osamu, Kuroda Kazuyuki
Department of Applied Chemistry, Waseda University, Ohkubo-3, Shinjuku-ku, Tokyo 169-8555, Japan.
J Am Chem Soc. 2005 Oct 12;127(40):14108-16. doi: 10.1021/ja0541736.
A novel self-assembly route to ordered silica-organic hybrids using well-defined siloxane oligomers with alkoxy functionality and covalently attached alkyl chains has been investigated. Various hybrid mesostructures were obtained by hydrolysis and polycondensation without the use of any structure-directing agents. The oligomers 1(Cn), having an alkylsilane core and three branched trimethoxysilyl groups, formed highly ordered lamellar phases when n = 14-18, while those with shorter alkyl chains formed cylindrical assemblies, slightly distorted two-dimensional (2D) hexagonal structures (n = 6-10), and a novel 2D monoclinic structure (n = 12). Furthermore, the mixtures of 1(Cn) with different chain lengths yielded well-ordered 2D hexagonal phases, possibly due to the better packing of the precursors. The hybrids consisting of cylindrical assemblies were converted to ordered porous silica with tunable pore sizes upon calcination to remove organic groups. The liquid-state 29Si NMR analysis of the hydrolysis and polycondensation processes of 1(Cn) revealed a unique intramolecular reaction yielding primarily the oligomer with a tetrasiloxane ring which is a new class of amphiphilic molecule having both self-assembling ability and high cross-linking ability. We also found that the mesostructure (lamellar or 2D hexagonal) was strictly controlled by varying the number of siloxane units per alkyl chain. These results provide a deeper understanding of the present self-assembly process that is strongly governed by the molecular packing of oligosiloxane precursors.
研究了一种利用具有烷氧基官能团和共价连接烷基链的明确硅氧烷低聚物制备有序二氧化硅 - 有机杂化材料的新型自组装途径。通过水解和缩聚反应,在不使用任何结构导向剂的情况下获得了各种杂化介观结构。具有烷基硅烷核心和三个支化三甲氧基硅基的低聚物1(Cn),当n = 14 - 18时形成高度有序的层状相,而具有较短烷基链的低聚物形成圆柱形组装体、轻微扭曲的二维(2D)六方结构(n = 6 - 10)和新型2D单斜结构(n = 12)。此外,不同链长的1(Cn)混合物产生了有序的2D六方相,这可能是由于前驱体更好的堆积。煅烧以去除有机基团后,由圆柱形组装体组成的杂化材料转变为孔径可调的有序多孔二氧化硅。对1(Cn)水解和缩聚过程的液态29Si NMR分析揭示了一种独特的分子内反应,主要生成具有四硅氧烷环的低聚物,这是一类新型的具有自组装能力和高交联能力的两亲分子。我们还发现,通过改变每个烷基链上的硅氧烷单元数量,可以严格控制介观结构(层状或2D六方)。这些结果为目前由低聚硅氧烷前驱体的分子堆积强烈控制的自组装过程提供了更深入的理解。