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Fractal Structure in Silica and Composites Aerogels

机译:二氧化硅和复合材料气凝胶中的分形结构

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摘要

Silica aerogels are known to be materials with exceptional characteristics, such as ultra-low density, high surface area, high porosity, high adsorption, and low-thermal conductivity. In addition, these unique properties are mainly related to their specific processing. Depending on the aerogel synthesis procedure, the aerogels texture can be tailored with meso and/or macroporosity. Fractal geometry has been observed and used to describe silica aerogels at nanoscales in certain conditions. In this review paper, we describe the fractal structure of silica aerogels that can develop depending on the synthesis conditions. X-ray and neutron scattering measurements allow to show that silica aerogels can exhibit a fractal structure over one or even more than two orders of magnitude in length. The fractal dimension does not depend directly on the material density but can vary with the synthesis conditions. It ranges typically between 1.6 and 2.4. The effect of the introduction of silica particles or of further thermal treatment or compression of the silica aerogels on their microstructure and their fractal characteristics is also resumed.
机译:已知二氧化硅气凝胶是具有卓越特性的材料,例如超低密度,高表面积,高孔隙率,高吸附和低导热率。此外,这些独特的属性主要与其具体处理有关。根据AiSo和/或MACropoRity可以定制气凝胶纹理的气凝胶纹理。已经观察到分形几何体,并用于在某些条件下描述纳米级的二氧化硅气凝胶。在本文中,我们描述了可根据合成条件开发的二氧化硅气凝胶的分形结构。 X射线和中子散射测量允许表明,二氧化硅气凝胶可以在一个或甚至长度的幅度上表现出分形结构。分形尺寸不直接取决于材料密度,但可以随合成条件而变化。它通常在1.6和2.4之间。还恢复了二氧化硅颗粒或进一步热处理或进一步热处理或压缩二氧化硅气凝胶的影响及其分形特征。

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