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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Silica–titania aerogel monoliths with large pore volume and surface area by ambient pressure drying
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Silica–titania aerogel monoliths with large pore volume and surface area by ambient pressure drying

机译:二氧化硅-二氧化钛气凝胶整料,通过常压干燥具有大的孔体积和表面积

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Ambient pressure drying has been carried out for the synthesis of silica–titania aerogel monoliths. The prepared aerogels show densities in the range 0.34–0.38 g/cm3. The surface area and pore volume of these mixed oxide aerogels are comparable to those of the supercritically dried ones. The surface area for 5wt% titania aerogel has been found to be as high as 685 m2/g with a pore volume of 2.34 cm3/g and the 10wt% titania aerogel has a surface area of 620 m2/g with a pore volume of 2.36 cm3/g. Some gels were also made hydrophobic by a surface treatment with methyltrimethoxysilane and trimethylchlorosilane. The surface modified aerogels possess high surface areas in the range of 540–640 m2/g, and are thermally stable in terms of retaining hydrophobicity up to a temperature of 520 °C. The pore size distribution of the aerogels clearly indicates the preservation of the aerogel structure. High Resolution Transmission Electron microscopy has been employed to characterise the aerogels and Fourier Transform infrared spectroscopy to study the effect of titania addition to silica and the surface modification. X-ray diffraction patterns were recorded to verify the molecular homogeneity of the aerogel.
机译:已经进行了常压干燥,以合成二氧化硅-二氧化钛气凝胶单块。制备的气凝胶的密度在0.34–0.38 g / cm 3 范围内。这些混合氧化物气凝胶的表面积和孔体积与超临界干燥的气凝胶相当。发现5wt%的二氧化钛气凝胶的表面积高达685 m 2 / g,孔体积为2.34 cm 3 / g,二氧化钛的含量为10wt%气凝胶的表面积为620 m 2 / g,孔体积为2.36 cm 3 / g。通过用甲基三甲氧基硅烷和三甲基氯硅烷进行表面处理,一些凝胶也被制成疏水性。经表面改性的气凝胶具有540–640 m 2 / g的高表面积,并且在保持高达520°C的温度时具有热稳定性。气凝胶的孔径分布清楚地表明了气凝胶结构的保留。高分辨率透射电子显微镜已用于表征气凝胶和傅里叶变换红外光谱,以研究向二氧化硅中添加二氧化钛的效果和表面改性。记录X射线衍射图以验证气凝胶的分子均质性。

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