材料科学
压电
陶瓷
电场
复合数
复合材料
领域(数学)
理论(学习稳定性)
铁电性
铁电陶瓷
堆积
工作(物理)
相(物质)
结构稳定性
机械工程
光电子学
电介质
核磁共振
计算机科学
结构工程
机器学习
物理
工程类
数学
有机化学
化学
量子力学
纯数学
作者
Yungang Yu,Xiaoming Shi,Haoyue Xue,Nan Zhang,Ting Zheng,Houbing Huang,Jianguo Zhu,Jiagang Wu
标识
DOI:10.1021/acsami.2c05740
摘要
The prominent advances in both piezoelectricity and temperature stability of potassium sodium niobate-based ceramics make this material system the most potential alternative to toxic lead-based families. However, previous studies have shown that the excellent temperature stability of the electrostrain can be obtained only under a high electric field. This issue can be well solved by our new proposed strategy of constructing multilayer composite ceramics, where an extremely low electric-field-dependent temperature stability of the strain can be achieved, far outperforming the results reported so far. The synergistic contributions from stacking components with different strain responses under different temperatures and electric field strengths realize the dynamic balance of electrostrain of the multilayer composite ceramics, which is also revealed by phase-field simulation. This work provides new ideas for the artificial structural design for the development of stable and reliable high-performance piezo/ferroelectric ceramics.
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