首页> 外文期刊>Journal of Colloid and Interface Science >Synthesis, structure and properties of cross-linked R(SiO_(1.5))/SiO_2 (R = 3-glycidoxypropyl) porous organic inorganic hybrid networks dried at ambient pressure
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Synthesis, structure and properties of cross-linked R(SiO_(1.5))/SiO_2 (R = 3-glycidoxypropyl) porous organic inorganic hybrid networks dried at ambient pressure

机译:常压干燥的交联R(SiO_(1.5))/ SiO_2(R = 3-环氧丙氧基丙基)多孔有机无机杂化网络的合成,结构和性能

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Highly porous organic inorganic hybrid networks have been prepared from tetraethoxysilane (TEOS) and 3-glycidoxypropyltrimethoxysilane (GPTMS) precursors by drying at ambient pressure. Hydrolysis-condensation reactions of the alkoxy groups on the precursors provide the inorganic network and polymerization of the epoxy group on GPTMS, the organic network. The effects of varying the molar ratios, water/OR, and TEOS/GPTMS (precursor ratio) on the gel structure were investigated. Infrared spectroscopy, thermal analysis, nitrogen adsorption measurements, and tunneling electron microscopy were used to characterize the structure and porosity features of the hybrids. At low precursor ratios, the organic networking is characterized by highly cross-linked polymer chains of low molecular weight and at high precursor ratios it consists of mainly linear chains of high molecular weight. Organic networking reinforces the inorganic network at high precursor ratios and the monoliths effectively withstand the stress produced during drying at ambient pressure. But as the proportion of the organic precursor increases, there is a higher shrinkage of the gel network, increasing the density of the dried gel. Variation in precursor ratio affects the volume of larger pores, while varying water content influences the volume of smaller pores. Monolithic gels with low shrinkage and density could be prepared through ambient pressure drying by this method.
机译:通过在环境压力下干燥,由四乙氧基硅烷(TEOS)和3-环氧丙氧基丙基三甲氧基硅烷(GPTMS)前体制备了高度多孔的有机无机杂化网络。前体上烷氧基的水解-缩合反应提供了无机网络,并在GPTMS(有机网络)上提供了环氧基的聚合。研究了改变摩尔比,水/ OR和TEOS / GPTMS(前体比)对凝胶结构的影响。红外光谱,热分析,氮吸附测量和隧道电子显微镜被用来表征杂种的结构和孔隙率特征。在低前体比率下,有机网络的特征在于低分子量的高度交联的聚合物链,而在高前体比率下,其主要由高分子量的线性链组成。有机网络以较高的前体比例增强了无机网络,并且整料有效地承受了在环境压力下干燥过程中产生的应力。但是随着有机前体比例的增加,凝胶网络的收缩率更高,从而增加了干燥凝胶的密度。前体比率的变化影响较大孔的体积,而变化的水含量影响较小孔的体积。通过这种方法可以通过环境压力干燥来制备低收缩和低密度的整体凝胶。

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