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Comparative study using small-angle x-ray scattering and nitrogen adsorption in the characterization of silica xerogels and aerogels

机译:使用小角度X射线散射和氮吸附进行硅胶干凝胶和气凝胶表征的比较研究

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摘要

A comparative study using small-angle x-ray scattering (SAXS) and nitrogen adsorption has been carried out in the structural characterization of silica xerogels and aerogels, obtained from tetraethoxysilane sonohydrolysis. The specific surface and the mean pore size as measured by both the techniques were found to be in notable agreement in all cases for aerogels and xerogels. According to the SAXS data, aerogels at 500 °C exhibit a mass fractal structure with fractal dimension D∼2.4 in the range between the correlation length ξ∼5.3 nm and a∼0.75 nm. An experimental method to probe the mass fractal structure of aerogels from exclusively nitrogen adsorption isotherms has been presented. For aerogels at 500 °C, we have found D∼2.4 in the range between the pore width 2rξ∼33 nm and 2ra∼4.5 nm, which is in notable agreement with the SAXS results (D ∼2.4, ξ∼5.3 nm, a∼0.75 nm) if we assign the pore width 2r probed by the Kelvin equation in the adsorption method to the Bragg distance 2π/q associated to the correlation length 1/q probed by SAXS.
机译:在从四乙氧基硅烷声水解获得的二氧化硅干凝胶和气凝胶的结构表征中,已经进行了使用小角度X射线散射(SAXS)和氮吸附的比较研究。发现在所有情况下,对于气凝胶和干凝胶,通过两种技术测量的比表面积和平均孔径均显着一致。根据SAXS数据,在500°C时,气凝胶呈现出分形维数D〜2.4的质量分形结构,在相关长度ξ〜5.3 nm和a〜0.75 nm之间。提出了一种仅通过氮吸附等温线探测气凝胶质量分数结构的实验方法。对于500°C的气凝胶,我们发现D〜2.4在孔径2rξ〜33 nm和2ra〜4.5 nm之间,这与SAXS结果显着一致(D〜2.4,ξ〜5.3 nm,a如果将通过开尔文方程式在吸附方法中探测到的孔径2r分配给与SAXS探测到的相关长度1 / q相关的布拉格距离2π/ q,则大约为0.75 nm)。

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