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Periodic mesoporous organosilicas containing interconnected [Si(CH2)](3) rings

机译:包含相互连接的[Si(CH2)](3)环的周期性介孔有机硅

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A periodic mesoporous organosilica composed of interconnected three-ring [Si(CH (2))](3) units built of three SiO2(CH2)(2) tetrahedral subunits is reported. It represents the archetype of a previously unknown class of nanocomposite materials in which two bridging organic groups are bound to each silicon atom. It can be obtained with powder and oriented film morphologies. The nanocomposite is self-assembled from the cyclic three-ring silsesquioxane [(EtO)(2)Si(CH2)](3) precursor and a surfactant mesophase to give a well-ordered mesoporous framework. Low dielectric constants and good mechanical stability of the films were measured, making this material interesting for microelectronic applications. Methylene group reactivity of the three-ring precursor provides entry to a family of nanocomposites, exemplified by the synthesis and self-assembly of [(EtO)(2)Si(CHR)][(EtO)(2)Si(CH2)](2) (where R indicates iodine, bromine, or an ethyl group). [References: 11]
机译:定期介孔有机二氧化硅由互连的三环[Si(CH(2))](3)单元组成的三个SiO2(CH2)(2)四面体亚基组成。它代表了以前未知的一类纳米复合材料的原型,其中两个桥接有机基团键合到每个硅原子上。可以通过粉末和取向膜形态获得。纳米复合材料是由环状三环倍半硅氧烷[(EtO)(2)Si(CH2)](3)前体和表面活性剂中间相自组装而成的,具有良好的介孔骨架。测量了薄膜的低介电常数和良好的机械稳定性,这使得该材料对于微电子应用很有趣。三环前体的亚甲基反应性提供了进入纳米复合材料家族的途径,以[(EtO)(2)Si(CHR)] [(EtO)(2)Si(CH2)]的合成和自组装为例(2)(其中R表示碘,溴或乙基)。 [参考:11]

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