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Phase-separation induced synthesis of superhydrophobic silica aerogel powders and granules

机译:相分离诱导超疏水硅气凝胶粉和颗粒的合成

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A phase-separation induced (PSI) method of synthesizing superhydrophobic silica aerogel powders and granules is developed by direct hydrophobilization of silica alcogels in diluted trimethylchlorosilane organic solution and followed by ambient pressure drying (APD). It's interesting to observed that after the successful hydrophobilization of the alcogels, phase-separation occurred and the gels are dispersed in the organic solvent layer while ethanol and HCl forming another layer. Therefore the gels could be facilely collected and dried under ambient pressure, without the essential solvent-exchange step that frequently employed in the traditional APD methods. The silica aerogel powders and granules synthesized by the PSI method possess specific surface areas up to 756.0 m(2)/g, thermal conductivity down to 0.0164 W/mK, and variable densities from 47.6 to 120.0 mg/cm(3). Besides, the appearance of the silica aerogels could be well-controlled to be highly transparent powders or granules. In sum, the PSI method provide a simple method to synthesize high quality silica aerogel powders and granules in an economic way, and the aerogels may find valuable applications in thermal insulation, environmental remediation and adsorption, etc.
机译:通过直接疏水化二氧化硅阿尔葡糖硅氧烷有机溶液,然后环境压力干燥(APD)通过直接疏水,通过直接疏水,通过在稀三甲基氯硅烷有机溶液中的直接疏水,然后进行环境压力干燥(APD)来开发相分离诱导的(PSI)方法。有趣的是观察到,在成功疏水化醛凝胶后,发生相分离,凝胶分散在有机溶剂层中,同时乙醇和HCl形成另一层。因此,凝胶可以在环境压力下施加凝胶并干燥,而没有经常以传统APD方法使用的必需溶剂交换步骤。由PSI方法合成的二氧化硅气凝胶粉和颗粒具有高达756.0m(2)/ g,导热率下降至0.0164W / mk的热导电,可变密度为47.6至120.0mg / cm(3)。此外,可以很好地控制二氧化硅气凝胶的外观,以是高度透明的粉末或颗粒。总之,PSI方法提供了一种以经济方式合成高质量的石英气凝胶粉和颗粒的简单方法,气动凝胶可以在保温,环境修复和吸附等中找到有价值的应用。

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