Pore structures and microstructures of silica gel monoliths at different stages of sintering

S. Mukherjee, J. Cordaro, J. C. Debsikdar
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引用次数: 7

Abstract

The pore structures and microstructures of silica gel monoliths derived from the polycondensation of tetramethoxysilane (TMOS) in basic pH were characterized after various stages of sintering, using N{sub 2} gas adsorption-desorption, mercury porosimetry, and TEM. Gels dried by supercritical drying, i.e., aerogels and gels dried slowly in air have different pore structures and sinter with contrasting results when heat-treated under identical conditions. The air-dried gels do not sinter to full density and exhibit bloating on heating to high temperatures (1,100{degree}C), whereas under the same condition aerogels sinter to dense, transparent glass without bloating. Transmission electron microscopy shows that the microstructure of gels is composed of 5- to 10-nm primary spherical particles which clustered to form large (100 nm) spherical aggregates loosely bound to each other. In aerogels, two types of porosity exit: macroporosity and ultraporosity.
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烧结不同阶段硅胶整体的孔隙结构和微观结构
采用N{sub - 2}气体吸附-解吸、汞孔法和透射电镜对四甲基氧基硅烷(TMOS)在碱性pH条件下缩聚所得硅胶整体体的孔隙结构和微观结构进行了表征。超临界干燥的凝胶,即气凝胶和在空气中缓慢干燥的凝胶,在相同条件下热处理,其孔隙结构和烧结效果不同。风干的凝胶在加热到高温(1100℃)时不会烧结到完全密度,并且会出现膨胀,而在相同的条件下,气凝胶会烧结成致密、透明的玻璃而不会膨胀。透射电子显微镜显示,凝胶的微观结构是由5 ~ 10nm的初级球形颗粒组成,这些颗粒聚集形成大的(100nm)球形聚集体,彼此松散结合。在气凝胶中,存在两种类型的孔隙:大孔隙和超孔隙。
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