首页> 外文会议>Symposium on Nanophase and Nanocomposite Materials IV, Nov 26-29, 2001, Boston, Massachusetts, U.S.A. >Formation of Ordered Silica-Organic Hybrids by Self-Assembly of Hydrolyzed Organoalkoxysilanes with Long Organic Chains
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Formation of Ordered Silica-Organic Hybrids by Self-Assembly of Hydrolyzed Organoalkoxysilanes with Long Organic Chains

机译:带有长有机链的水解有机烷氧基硅烷的自组装形成有序硅有机杂化物

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摘要

Various layered hybrid films prepared from Organoalkoxysilanes with long organic chains, based on the self-assembly of the hydrolyzed species, are reviewed. Morphological control of transparent and oriented films was achieved by cohydrolysis and polycondensation with tetraalkoxysilanes, followed by dip- or spin-coating. In addition to alkyltrialkoxysilanes, alkyldimethylmonoalkoxy- and alkylmethyldialkoxy-silanes were also used as the structural units, implying that the inorganic-organic interface can be designed at a molecular level. In these cases, co-condensation in the precursor solution plays an essential role in the formation of homogeneous and ordered films. Alkenyltriethoxysilanes with terminal C=C bonds were also employed to prepare layered hybrid films. Interlayer chains were polymerized upon UV irradiation, and the resulting films exhibited a significant increase in the hardness if compared with the films before polymerization. Hybrid films thus obtained are a new class of materials and of great interest for a wide range of materials chemistry.
机译:基于水解物种的自组装,综述了由具有长有机链的有机烷氧基硅烷制备的各种层状杂化膜。通过与四烷氧基硅烷进行共水解和缩聚反应,然后进行浸涂或旋涂,可以实现透明和定向膜的形态控制。除了烷基三烷氧基硅烷以外,烷基二甲基单烷氧基硅烷和烷基甲基二烷氧基硅烷也用作结构单元,这意味着可以在分子水平上设计无机-有机界面。在这些情况下,前体溶液中的共冷凝在形成均匀有序的膜中起着至关重要的作用。具有末端C = C键的烯基三乙氧基硅烷也用于制备层状杂化膜。紫外线照射下使层间链聚合,与聚合前的膜相比,所得膜的硬度显着提高。如此获得的杂化膜是一类新的材料,并且对于广泛的材料化学具有极大的兴趣。

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