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有机-无机双凝胶体系隔热疏水聚酰亚胺气凝胶

Organic-Inorganic Double-Gel System Thermally Insulating and Hydrophobic Polyimide Aerogel.

作者信息

Xiong Liyao, Zheng Weijie, Cao Shenglong, Zheng Yuying

机构信息

College of Materials Science and Engineering, Fuzhou University, Fuzhou 350116, China.

出版信息

Polymers (Basel). 2022 Jul 11;14(14):2818. doi: 10.3390/polym14142818.

Abstract

Aerogel materials are used in various fields, but there is a shortage of aerogel materials with an excellent combination of mechanical properties, thermal stability, and easy preparation. In this study, polyimide aerogel materials with superior mechanical properties, thermal stability, and low thermal conductivity were prepared by forming a double-gel system in the liquid phase. The amino-modified gel, prepared by coating SiO nano-microspheres with GO through a modified sol-gel method (SiO@GO-NH), was subsequently homogeneously dispersed with PAA wet gel in water to form a double-gel system. The construction of a double-gel system enabled the PI aerogel to shape a unique honeycomb porous structure and a multi-layered interface of PI/SiO/GO. The final obtained PI aerogel possessed effective thermal conductivity (0.0309 W/m·K) and a high specific modulus (46.19 m/s). In addition, the high thermal stability (543.80 °C in Ar atmosphere) and the ability to retain properties under heat treatment proved its durability in high thermal environments. The hydrophobicity (131.55°) proves its resistance to water from the environment. The excellent performance of this PI aerogel and its durability in thermal working environments make it possible to be applied in varied industrial and research fields, such as construction and energy, where heat and thermal insulation are required.

摘要

气凝胶材料应用于各个领域,但缺乏机械性能、热稳定性和易于制备三者优异结合的气凝胶材料。在本研究中,通过在液相中形成双凝胶体系制备了具有优异机械性能、热稳定性和低热导率的聚酰亚胺气凝胶材料。通过改进的溶胶-凝胶法用氧化石墨烯包覆二氧化硅纳米微球制备氨基改性凝胶(SiO@GO-NH),随后将其与聚丙烯酸湿凝胶在水中均匀分散形成双凝胶体系。双凝胶体系的构建使聚酰亚胺气凝胶形成独特的蜂窝状多孔结构以及聚酰亚胺/二氧化硅/氧化石墨烯的多层界面。最终得到的聚酰亚胺气凝胶具有有效的热导率(0.0309W/m·K)和高比模量(46.19m/s)。此外,高热稳定性(在氩气气氛中为543.80°C)以及在热处理下保持性能的能力证明了其在高温热环境中的耐久性。疏水性(131.55°)证明了其对环境中水的耐受性。这种聚酰亚胺气凝胶的优异性能及其在热工作环境中的耐久性使其有可能应用于各种工业和研究领域,如需要隔热保温的建筑和能源领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/497a/9321330/d0f9c00e7b0e/polymers-14-02818-g001.jpg

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