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A facile method to prepare cellulose whiskers-silica aerogel composites

机译:一种制备纤维素晶须 - 二氧化硅气凝胶复合材料的容易方法

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Highly porous and hydrophobic cellulose whiskers-silica aerogel composites were successfully fabricated by a novel co-precursor method based on sol-gel process under ambient pressure drying. Cellulose whiskers were dispersed in the initial sol and were finally inlaid in silica aerogel skeleton by physical combination, which retained the integrality of the aerogel matrix. With the increase of cellulose whiskers content from 0 to 15%, the volume shrinkage of alcogels during drying process decreased from 25.5 to 17.6%, while the porous nano-structure of aerogels were not significantly altered. The potential impact of cellulose whiskers on the thermal conductivity and thermal stability of the prepared composites was investigated. The new composite was intact and white, which exhibited typical properties of 0.137 g cm(-3) density, 3.525 cm(3) g(-1) pore volume, and 139.6A degrees contact angle, respectively. This work explained how the addition of an organic filler into the silica aerogels influenced their properties and provided a technique for silica aerogels to endure and remain monolithic under ambient pressure drying.
机译:通过基于环境压力干燥的溶胶 - 凝胶工艺的新型共进前体方法成功制造了高度多孔和疏水纤维素晶须 - 二氧化硅气凝胶复合材料。将纤维素晶须分散在初始溶胶中,并通过物理组合将在二氧化硅气凝胶骨架中镶嵌,保留气凝胶基质的完整性。随着纤维素晶须含量从0〜15%的增加,干燥过程中AlcoGels的体积收缩从25.5%降至17.6%,而气孔的多孔纳米结构没有显着改变。研究了纤维素晶须对制备复合材料的导热率和热稳定性的潜在影响。新型复合材料完整且白色,其典型性能为0.137g cm(-3)密度,3.525cm(3 )g(-1)孔体积,分别为139.6a接触角。这项工作说明了如何将有机填料加入二氧化硅气凝胶中,影响它们的性质,并提供了一种用于硅氧石的技术,以凸起并在环境压力干燥下整体。

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