Large electrostrictive response in lead halide perovskites

被引:0
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作者
Bo Chen
Tao Li
Qingfeng Dong
Edoardo Mosconi
Jingfeng Song
Zhaolai Chen
Yehao Deng
Ye Liu
Stephen Ducharme
Alexei Gruverman
Filippo De Angelis
Jinsong Huang
机构
[1] University of Nebraska-Lincoln,Department of Mechanical and Materials Engineering
[2] University of Nebraska-Lincoln,Department of Physics and Astronomy, and Nebraska Center for Materials and Nanoscience
[3] CNR-ISTM,Computational Laboratory for Hybrid/Organic Photovoltaics (CLHYO)
[4] D3-Computation,Department of Applied Physical Sciences
[5] Istituto Italiano di Tecnologia,undefined
[6] University of North Carolina,undefined
来源
Nature Materials | 2018年 / 17卷
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摘要
Lead halide perovskites have demonstrated outstanding performance in photovoltaics, photodetectors, radiation detectors and light-emitting diodes. However, the electromechanical properties, which are the main application of inorganic perovskites, have rarely been explored for lead halide perovskites. Here, we report the discovery of a large electrostrictive response in methylammonium lead triiodide (MAPbI3) single crystals. Under an electric field of 3.7 V µm−1, MAPbI3 shows a large compressive strain of 1%, corresponding to a mechanical energy density of 0.74 J cm−3, comparable to that of human muscles. The influences of piezoelectricity, thermal expansion, intrinsic electrostrictive effect, Maxwell stress, ferroelectricity, local polar fluctuation and methylammonium cation ordering on this electromechanical response are excluded. We speculate, using density functional theory, that electrostriction of MAPbI3 probably originates from lattice deformation due to formation of additional defects under applied bias. The discovery of large electrostriction in lead iodide perovskites may lead to new potential applications in actuators, sonar and micro-electromechanical systems and aid the understanding of other field-dependent material properties.
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页码:1020 / 1026
页数:6
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