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首页> 外文期刊>Journal of porous materials >Reduction of processing time by mechanical shaking of the ambient pressure dried TEOS based silica aerogel granules
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Reduction of processing time by mechanical shaking of the ambient pressure dried TEOS based silica aerogel granules

机译:通过机械摇动常压干燥的TEOS基二氧化硅气凝胶颗粒来减少加工时间

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The present paper deals with preparation of silica aerogel granules by two step acid-base sol-gel process involving ambient pressure drying of alcogels with additional use of mechanical shaker to accelerate the solvent exchange process and characterization of the yielded aerogels granules to study their physical properties. The conventional ambient pressure drying of alcogels is crucial since it needs tedious repetitive gel washing and solvent exchanges (10 times) which consumes total process time of 4 days. We have succeeded to synthesize aerogels within 2 days by making use of alcogels shaking. To get good quality aerogels in terms of low density, high optical transparency, low volume shrinkage, various base catalysts and their combinations were used. The optimal molar ratio of precursor chemicals Tetraethoxysilane (TEOS): Metha-nol (MeOH): Oxalic acid: NH_4OH: NH_4F: Trimethyl-chlorosilane (TMCS) found to be 1: 16.5: 0.49: 0.58: 0.60: 0.98, respectively. Among six catalyst studied, combination of NH_4OH and NH_4F resulted in low density and transparent aerogels. Hydrophobicity was achieved by surface silylation using TMCS silylating agent but lead to decrease in transparency due to chloride precipitation. We have improved transparency of aerogels by methanol washing of alcogels prior to silylation. The hydrophobicity has been studied by FTIR analysis and contact angle measurements. The thermal analysis indicates thermal stability of hydrophobicity up to 318 ℃ and the Surface morphology of aerogel has been studied by FESEM.
机译:本文涉及通过两步酸碱溶胶-凝胶法制备二氧化硅气凝胶颗粒,其中包括在常压下对醇凝胶进行干燥,并另外使用机械振荡器以加速溶剂交换过程,并对表征的气凝胶颗粒进行表征以研究其物理性质。 。常规的常压醇凝胶干燥至关重要,因为它需要繁琐的重复性凝胶洗涤和溶剂交换(10次),这消耗了4天的总处理时间。我们已经成功地通过摇动醇凝胶在两天内合成了气凝胶。为了获得低密度,高光学透明性,低体积收缩率方面的优质气凝胶,使用了各种碱性催化剂及其组合。发现前体化学品四乙氧基硅烷(TEOS):甲基萘酚(MeOH):草酸:NH_4OH:NH_4F:三甲基-氯硅烷(TMCS)的最佳摩尔比分别为1:16.5:0.49:0.58:0.60:0.98。在研究的六种催化剂中,NH_4OH和NH_4F的组合产生了低密度和透明的气凝胶。通过使用TMCS甲硅烷基化剂的表面甲硅烷基化实现疏水性,但是由于氯化物沉淀导致透明性降低。通过在甲硅烷基化之前用甲醇洗涤醇凝胶,我们已经改善了气凝胶的透明度。已经通过FTIR分析和接触角测量研究了疏水性。热分析表明疏水性在318℃以下具有热稳定性,并通过FESEM研究了气凝胶的表面形态。

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