Bending-induced electromechanical coupling and large piezoelectric response in a micromachined diaphragm
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作者:
Zhihong Wang
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机构:Advanced Nanofabrication Core Lab,
Zhihong Wang
Yingbang Yao
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机构:Advanced Nanofabrication Core Lab,
Yingbang Yao
Xianbin Wang
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机构:Advanced Nanofabrication Core Lab,
Xianbin Wang
Weisheng Yue
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机构:Advanced Nanofabrication Core Lab,
Weisheng Yue
Longqing Chen
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机构:Advanced Nanofabrication Core Lab,
Longqing Chen
Xi Xiang Zhang
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机构:Advanced Nanofabrication Core Lab,
Xi Xiang Zhang
机构:
[1] Advanced Nanofabrication Core Lab,
[2] King Abdullah University of Science and Technology,undefined
来源:
Scientific Reports
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3卷
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摘要:
We investigated the dependence of electromechanical coupling and the piezoelectric response of a micromachined Pb(Zr0.52Ti0.48)O3 (PZT) diaphragm on its curvature by observing the impedance spectrum and central deflection responses to a small AC voltage. The curvature of the diaphragm was controlled by applying air pressure to its back. We found that a depolarized flat diaphragm does not initially exhibit electromechanical coupling or the piezoelectric response. However, upon the application of static air pressure to the diaphragm, both electromechanical coupling and the piezoelectric response can be induced in the originally depolarized diaphragm. The piezoelectric response increases as the curvature increases and a giant piezoelectric response can be obtained from a bent diaphragm. The obtained results clearly demonstrate that a high strain gradient in a diaphragm can polarize a PZT film through a flexoelectric effect and that the induced piezoelectric response of the diaphragm can be controlled by adjusting its curvature.