首页> 外文期刊>Journal of Sol-Gel Science and Technology >Effect of post-treatment (gel aging) on the properties of methyltrimethoxysilane based silica aerogels prepared by two-step sol–gel process
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Effect of post-treatment (gel aging) on the properties of methyltrimethoxysilane based silica aerogels prepared by two-step sol–gel process

机译:后处理(凝胶老化)对两步溶胶-凝胶法制备的甲基三甲氧基硅烷基二氧化硅气凝胶性能的影响

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摘要

The properties of silica aerogels are highly dependent on the post-treatment steps like gel washing, gel aging and gel drying. The experimental results of the studies on one of the post-treatment steps i.e. gel aging effect on the physical and microstructural properties of methyltrimethoxysilane (MTMS) based silica aerogels, are reported. These hybrid aerogels were prepared by two step sol–gel process followed by supercritical drying. The molar ratio of MeOH/MTMS (M) was varied from 7 to 35 by keeping the H2O/MTMS (W) molar ratio constant at 4. The as prepared alcogels of different molar ratios were aged from 0 to 5 days. It was observed that 2 days of gel aging period is the optimum gel aging period for good quality aerogels in terms of low density, less volume shrinkage and high porosity. The well tailored network matrix with low density (0.04 g/cm3), less volume shrinkage (4.5%), low thermal conductivity (0.05 W/mK) and high porosity (98.84 %) was obtained for 2 days of gel aging period of M = 35. Further, the gelation time varied from 8 to 1 h depending on the M values. The gelation time was being more for lesser M values. The aerogels were characterized by bulk density, porosity, volume shrinkage, thermal conductivity, Scanning Electron Microscopy and the Fourier Transform Infrared spectroscopy.
机译:二氧化硅气凝胶的性能高度依赖于后处理步骤,例如凝胶洗涤,凝胶老化和凝胶干燥。报道了关于后处理步骤之一的研究的实验结果,即凝胶老化对基于甲基三甲氧基硅烷(MTMS)的二氧化硅气凝胶的物理和微结构性质的影响。这些混合气凝胶是通过两步溶胶-凝胶法,然后超临界干燥制备的。通过保持H 2 -O / MTMS(W)的摩尔比恒定为4,将MeOH / MTMS(M)的摩尔比从7改变为35。老化所制备的不同摩尔比的醇凝胶从0到5天。据观察,就低密度,较小的体积收缩率和高孔隙率而言,两天的凝胶老化期是高质量气凝胶的最佳凝胶老化期。获得了精心设计的网状基质,其密度低(0.04 g / cm 3 ),体积收缩率小(4.5%),导热率低(0.05 W / mK)和孔隙率高(98.84%)。 2天的凝胶老化时间为M = 35。此外,取决于M值,凝胶化时间从8小时变化到1小时。 M值越小,胶凝时间越长。气凝胶的特征在于堆积密度,孔隙率,体积收缩,热导率,扫描电子显微镜和傅立叶变换红外光谱。

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