压电
多物理
材料科学
半导体
振动
纳米发生器
压电马达
压电传感器
微电子机械系统
PMUT公司
声学
光电子学
结构工程
复合材料
有限元法
物理
工程类
作者
Mengen Li,Qiaoyun Zhang,Xiaodong Wang,MingHao Zhao
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2021-07-14
卷期号:14 (14): 3926-3926
被引量:22
摘要
The performance of devices fabricated from piezoelectric semiconductors, such as sensors and actuators in microelectromechanical systems, is superior; furthermore, plate structures are the core components of these smart devices. It is thus important to analyze the electromechanical coupling properties of piezoelectric semiconductor nanoplates. We established a nanoplate model for the piezoelectric semiconductor plate structure by extending the first-order shear deformation theory. The flexural vibrations of nanoplates subjected to a transversely time-harmonic force were investigated. The vibrational modes and natural frequencies were obtained by using the matrix eigenvalue solver in COMSOL Multiphysics 5.3a, and the convergence analysis was carried out to guarantee accurate results. In numerical cases, the tuning effect of the initial electron concentration on mechanics and electric properties is deeply discussed. The numerical results show that the initial electron concentration greatly affects the natural frequency and electromechanical fields of piezoelectric semiconductors, and a high initial electron concentration can reduce the electromechanical fields and the stiffness of piezoelectric semiconductors due to the electron screening effect. We analyzed the flexural vibration of typical piezoelectric semiconductor plate structures, which provide theoretical guidance for the development of new piezotronic devices.
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