锆钛酸铅
材料科学
传感器
陶瓷
执行机构
铁电性
压电
能量收集
偶极子
复合材料
光电子学
声学
能量(信号处理)
电介质
电气工程
化学
物理
工程类
统计
有机化学
数学
作者
Zhao Li,Hao‐Cheng Thong,Yun‐Fan Zhang,Ze Xu,Zhen Zhou,Yixuan Liu,Yue‐Yu‐Shan Cheng,Shi‐Hong Wang,Chunlin Zhao,Feng Chen,Ke Bi,Bing Han,Ke Wang
标识
DOI:10.1002/adfm.202005012
摘要
Abstract Lead zirconate titanate (PZT)‐based piezoelectric ceramics are important functional materials for various electromechanical applications, including sensors, actuators, and transducers. High piezoelectric coefficient and mechanical quality factor are essential for the resonant piezoelectric application. However, since these properties are often inversely proportional, simultaneously high performances are hard to achieve, consequently, a wide range of applications are strongly restricted. In the present study, exceptionally well‐balanced performances are achieved in PZT‐based ceramics via innovative defect engineering, which involves multi‐scale coordination among defect dipole, domain‐wall density, and grain boundary. These materials are superior to many state‐of‐the‐art commercial counterparts, which can potentially satisfy high‐end requirements for advanced electromechanical applications, such as energy harvesting, structural health monitoring, robotic sensors, and actuator.
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