材料科学
压电
工程物理
凝聚态物理
复合材料
物理
工程类
作者
Lisha Liu,Jiaojiao Yi,Mingmeng Tang,Yongbao Cui,Neamul H. Khansur,Kyle G. Webber,Fangyuan Zhu,Xiaolong Li,Ke Wang,Tadej Rojac,J. Daniels,Dragan Damjanović,Shidong Wang,Yaojin Wang
标识
DOI:10.1002/adfm.202314807
摘要
Abstract BiFeO 3 is a ferroelectric with a Curie temperature of 830 °C, however, its piezoelectric performance at high temperature remains unclear. The current work reveals a disappearance/recovery of piezoelectricity in BiFeO 3 at elevated temperature and upon cooling. In particular, that temperature is strongly frequency‐dependent and ranges from 280 to 430 °C between 0.5 and 140 Hz, respectively. Meanwhile, in situ and ex situ X‐ray diffraction and piezoresponse microscope analysis demonstrate thermally‐resistant domain texture to temperatures as high as 750 °C. This demonstrates that the piezoelectricity of BiFeO 3 is strongly influenced by its resistance/conductance variations due to charge carrier motion limiting the operational frequency. The investigation enhances the understanding of BiFeO 3 complex piezoelectric behavior at various temperatures, offering insights into its potential applications.
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