Effects of molecular organic additives on formation and properties of organosilicate and silica xerogels correlated to structural properties of the additive

被引:12
作者
Carr, SW
Courtney, L
Sullivan, AC
机构
[1] Department of Chemistry, Queen Mary and Westfield College, London E1 4NS, Mile End Road
[2] Unilever Research, Port Sunlight Laboratory, Bebington, Wirral L63 3JW, Quarry Road East
[3] ICI Explosives-Technical, Kurri Kurri, NSW 2327
关键词
D O I
10.1021/cm960499p
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This paper describes the effects of some polar organic additives on the sol-gel processing of organodisilicate and silica precursors. For a range of organic additives investigated, those for which molecular stacking is a feature of the crystal structure (type A) promote extensive fragmentation of organosilicate and silica xerogels into thin plates and small (similar to 1 mm diameter) granules during the final drying stages. Two organic additives that do not exhibit such stacking (type B) were investigated, these did not promote such fragmentation, and the organic additive-treated monoliths were formed. Sol-gel mixtures investigated with type A organic additives include: 1,4-bis(Cl3SiCH2)(2)C6H4 and organic additives trans-cinnamic acid (TCA), crotonic acid, or benzoic acid; 1,4-bis[(n-BuO)(3)SiCH2)](2)C6H4 and m-nitroaniline; 1,4-bis[(EtO)(3)Si]C6H4 and [(EtO)(4)Si] with trans-cinnamic acid. Sol-gel mixtures containing type B organic additives investigated were 1,4-bis(Cl3SiCH2)(2)C6H4 and the organic additives phenol or pinacol; 1,4-bis[(EtO)(3)Si]C6H4 or (EtO)(4)Si with PhOH. The additives may be removed by extraction of the xerogel materials with THF. The effects of tetrahydrofuran solutions of types A and 13 additives on monolithic additive-free organosilicate xerogels and silica gels is also reported. The materials have been variously studied by SEM(EDAX), XRD, Si-29 solid-state NMR, and C-13 solid-state NMR. The THF-extracted products were studied by nitrogen sorption porosimetry. BET measurements on THF extracted materials showed that type A additives generally gave low surface area materials while type B additives gave high surface area materials. Si-29 solid-state NMR and BET measurements revealed nonsystematic effects of TCA loading on local chemical structure and surface area, respectively.
引用
收藏
页码:1751 / 1756
页数:6
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