材料科学
无定形固体
立方氧化锆
图层(电子)
氧化物
无定形二氧化硅
复合材料
纳米技术
化学工程
冶金
结晶学
陶瓷
化学
工程类
作者
Dehua Ma,Weiwei Qin,Lin Wang,Benxue Liu,Yongshuai Xie,Guanghui Zhang,Xinqiang Wang,Luyi Zhu,Dong Xu
标识
DOI:10.1021/acsami.5c08575
摘要
Ceramic fibers cannot recover from stretching, bending, and compression at high temperatures owing to their inherent brittleness, which severely restricts their practical applications in harsh environments. However, by designing and regulating grain boundary layers, their inherent brittleness can be effectively decreased, endowing them with high toughness and elasticity at high temperatures. Herein, amorphous silica was incorporated into the grain boundary of zirconia nanograins in fibers to successfully prepare chemically bonded zirconia-silicon biphasic fibers (ZSFs) and fibrous membranes (ZSFMs). ZSFMs exhibit excellent tensile strength; excellent resistance to fatigue from buckling, tension, and compression; low thermal conductivity (20.87 mW·m-1·K-1 at -40 °C and 68.53 mW·m-1·K-1 at 1000 °C); and low density (30-50 mg·cm-3). Moreover, ZSFMs exhibit extraordinary thermal insulation performance. The design of flexible, bendable, and high-strength ZSFMs offers a method for using brittle ceramic components in military and civilian applications and many other fields.
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