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Synthesis of Silica-Based Nano Insulation Materials for Potential Application in Low-Energy or Zero Emission Buildings

机译:二氧化硅基纳米绝缘材料的合成,用于低能耗或零排放建筑物的潜在应用

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摘要

Sacrificial polystyrene (PS) templates have been used for synthesis of silica -based nano insulation materials (NIM). The PS was synthesized by a simple procedure where parameters as polyvinylpyrrolidone /styrene ratio and potassium persulfate amount were adjusted. Thereafter the PS template s were coated with silica by using tetraethyl orthosilicate (TEOS). The time used for adding TEOS was varied to investigate the effect on how the silica particles attached to the PS surface and the resulting silica spheres. By modifying the process, different PS templates were obtained. The thermal conductivity was measu red for hollow silica spheres originating from the coating process of 198 nm PS templates, and the results showed thermal conductivities around 38 mW/(mK) for long -time measurements (160 -640 s). Controlled synthesis of this silica -based NIM might be a step ping -stone on the path to a new generation of high -performance thermal insulation materials with low thermal conductivity, which can be used in the building envelope of low -energy or zero emission buildings in the future
机译:牺牲聚苯乙烯(PS)模板已用于合成基于二氧化硅的纳米绝缘材料(NIM)。通过简单的程序合成PS,其中调节了诸如聚乙烯吡咯烷酮/苯乙烯比率和过硫酸钾的量的参数。此后,通过使用原硅酸四乙酯(TEOS)将PS模板用二氧化硅涂覆。改变用于添加TEOS的时间以研究对二氧化硅颗粒如何附着到PS表面和所得二氧化硅球上的影响。通过修改过程,获得了不同的PS模板。对于源自198 nm PS模板涂布过程的空心二氧化硅球,其导热系数为可测量的,结果显示,对于长时间测量(160 -640 s),导热系数约为38 mW /(mK)。这种基于二氧化硅的NIM的受控合成可能是通往新一代低导热率高性能绝热材料的垫脚石,该材料可用于低能耗或零排放建筑的建筑围护结构中在将来

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