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Eco-Friendly Synthesis of Water-Glass-Based Silica Aerogels via Catechol-Based Modifier

机译:通过基于儿茶酚的改性剂的环保合成水玻璃基二氧化硅气凝胶

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摘要

Silica aerogels have attracted much attention owing to their excellent thermal insulation properties. However, the conventional synthesis of silica aerogels involves the use of expensive and toxic alkoxide precursors and surface modifiers such as trimethylchlorosilane. In this study, cost-effective water-glass silica aerogels were synthesized using an eco-friendly catechol derivative surface modifier instead of trimethylchlorosilane. Polydopamine was introduced to increase adhesion to the SiO2 surface. The addition of 4-tert-butyl catechol and hexylamine imparted hydrophobicity to the surface and suppressed the polymerization of the polydopamine. After an ambient pressure drying process, catechol-modified aerogel exhibited a specific surface area of 377 m2/g and an average pore diameter of approximately 21 nm. To investigate their thermal conductivities, glass wool sheets were impregnated with catechol-modified aerogel. The thermal conductivity was 40.4 mWm−1K−1, which is lower than that of xerogel at 48.7 mWm−1K−1. Thus, by precisely controlling the catechol coating in the mesoporous framework, an eco-friendly synthetic method for aerogel preparation is proposed.
机译:由于其优异的隔热性能,二氧化硅气凝胶引起了很多关注。然而,常规合成二氧化硅气凝胶涉及使用昂贵的且毒性的醇盐前体和表面改性剂,例如三甲基氯硅烷。在该研究中,使用生态友好友好的儿茶酚衍生物表面改性剂而不是三甲基氯硅烷合成了经济高效的水玻璃二氧化硅气凝胶。引入聚二胺以增加对SiO 2表面的粘附性。添加4-叔丁基儿茶酚和己胺赋予表面疏水性并抑制了聚二胺的聚合。在环境压力干燥过程之后,儿茶酚改性气凝胶显示出377m 2 / g的比表面积和约21nm的平均孔径。为了研究其热导体,用儿茶酚改性的气凝胶浸渍玻璃棉片。导热率为40.4mWm-1k-1,低于48.7mWm-1k-1的Xerogel的40.4mWm-1k-1。因此,通过精确地控制中孔框架中的儿茶酚涂层,提出了一种用于气凝胶制剂的环融合的合成方法。

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