材料科学
气凝胶
保温
陶瓷
热导率
复合材料
制作
热的
热桥
热阻
导电体
毛细管作用
纳米纤维
电介质
纳米技术
机械强度
泡沫陶瓷
作者
Jianan Qin,Xin Long,Xiongbang Wei,Jubo Tang,Lichun Zhou,Ying Lin,Jiaxuan Liao
标识
DOI:10.1021/acsami.5c22771
摘要
Ceramic nanofibrous aerogels exhibit exceptional thermal stability, outstanding elasticity, and ultralow thermal conductivity, making them promising candidates for thermal insulation under extreme conditions. However, their practical applications are hindered by the complexity of the fabrication processes required to achieve balanced mechanical and insulating properties. Herein, we propose a simple self-assembly strategy based on directional negative pressure-assisted arrangement and capillary force-induced infiltration growth for constructing a ceramic nanofibrous aerogel with a microlamellar structure. The resulting aerogels exhibit a low density (47.2 mg/cm 3 ), remarkable compressibility (60% strain recovery under 138.3 kPa stress), high thermal insulation (the thermal conductivity is 0.035 W/(m·K)), and outstanding high-temperature resistance (up to 1200 °C). This facile self-assembly strategy eliminates the need for energy-intensive post-treatments and complex templating agents, which provides an innovative and effective way to develop mechanically robust, highly thermally insulating ceramic aerogels for harsh-environment applications.
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