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Pore structure characterization of large-pore periodic mesoporous organosilicas synthesized with varying SiO2/template ratios

机译:SiO2 /模板比变化的大孔周期性介孔有机硅的孔结构表征

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Periodic mesoporous organosilicas (PMOs) synthesized by hydrolysis and condensation of bridged silsesquioxanes (RO)(3)SiR'-Si(OR)(3) in the presence of surfactant template are an emerging family of novel functional materials. In this study, the synthesis of ethylene-bridged PMOs with a highly ordered pore structure was demonstrated by using a nonionic surfactant P123 as a template under acidic conditions. Emphasis was made at the influence of SiO2/P123 ratios on the structural properties such as type of pore structure, the presence or absence of micropores and macropores, and pore volume. It was observed that an increase in SiO2/P123 ratios led to a gradual increase in the microporous volume. In the mean time, a structural transition from an open-channel pore structure to a cage-like pore structure was observed as the SiO2/P123 ratios were increased. (C) 2004 Elsevier B.V. All rights reserved.
机译:在存在表面活性剂模板的情况下,通过桥连倍半硅氧烷(RO)(3)SiR'-Si(OR)(3)的水解和缩合合成的周期性介孔有机硅(PMO)是新兴的新型功能材料家族。在这项研究中,通过在酸性条件下使用非离子表面活性剂P123作为模板,证明了具有高度有序的孔结构的桥连乙烯的PMO的合成。重点讨论了SiO2 / P123比对结构性质(例如孔结构类型,是否存在微孔和大孔以及孔体积)的影响。观察到SiO2 / P123比例的增加导致微孔体积的逐渐增加。同时,随着SiO2 / P123比的增加,观察到了从明渠孔结构到笼状孔结构的结构转变。 (C)2004 Elsevier B.V.保留所有权利。

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