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Nanofibers reinforced silica aerogel composites having flexibility and ultra-low thermal conductivity

机译:纳米纤维增强二氧化硅气凝胶复合材料具有柔韧性和超低导热率

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For the sake of enhancing the performance of flexible silica aerogel in practical applications, flexible SiO2/SnO2 nanofibers (SSNF) reinforced flexible silica aerogel composites (abbreviated as SiO2-SSNF) were successfully prepared. Firstly, the SiO2/SnO2 nanofibers with fine diameter (similar to 320 nm) and excellent flexibility were prepared by electrospinning technology. Then the aerogel composites were synthesized by adding the flexible SSNF to the silica solution and through the sol-gel method and ethanol supercritical drying technology. The effects of different content of the nanofibers on thermal conductivity and Yong's modulus of SiO2-SSNF aerogel composites were investigated. The SiO2/SnO2 nanofibers were randomly dispersed in the flexible silica aerogel and the great integrity of the material result in smaller linear shrinkage, better thermal protection, and mechanical properties compared with those pure SiO2 aerogels. The final SiO2-SSNF aerogel composites possess excellent thermal conductivity (0.025-0.029 W/(m.K)) and higher Yong's modulus (70 kPa), which was twice than that of the pure silica aerogel. This prepared SiO2-SSNF aerogel composites can be better used in thermal insulation due to its excellent flexible and thermal insulation property.
机译:为了提高柔性二氧化硅气凝胶在实际应用中的性能下,成功制备了柔性SiO 2 / SnO2纳米纤维(SSNF)增强柔性二氧化硅气凝胶复合材料(缩写为SiO2-SSNF)。首先,通过静电纺丝技术制备具有细直径(类似于320nm)的SiO 2 / SnO2纳米纤维和优异的柔韧性。然后通过将柔性SSNF加入二氧化硅溶液并通过溶胶 - 凝胶法和乙醇超临界干燥技术来合成气凝胶复合材料。研究了纳米纤维不同含量对热导率和延勇的SiO2-SSNF气凝胶复合材料的影响。将SiO 2 / SnO2纳米纤维随机分散在柔性二氧化硅气凝胶中,与那些纯SiO2气凝胶相比,材料的良好完整性导致较小的线性收缩,更好的热保护和机械性能。最终的SiO2-SSNF气凝胶复合材料具有出色的导热性(0.025-0.029 W /(M.K))和较高的Yong的模量(70kPa),其是纯二氧化硅气凝胶的两倍。这款制备的SiO2-SSNF气凝胶复合材料可以更好地用于热绝缘材料,由于其优异的柔性和保温性能。

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