范德瓦尔斯力
压电
铁电性
凝聚态物理
材料科学
物理
光电子学
复合材料
量子力学
电介质
分子
作者
Lü You,Yang Zhang,Shuang Zhou,Apoorva Chaturvedi,Samuel A. Morris,Fucai Liu,Lei Chang,Daichi Ichinose,Hiroshi Funakubo,Weijin Hu,Tom Wu,Zheng Liu,Shuai Dong,Junling Wang
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2019-04-05
卷期号:5 (4): eaav3780-eaav3780
被引量:293
标识
DOI:10.1126/sciadv.aav3780
摘要
Recent research on piezoelectric materials is predominantly devoted to enhancing the piezoelectric coefficient, but overlooks its sign, largely because almost all of them exhibit positive longitudinal piezoelectricity. The only experimentally known exception is ferroelectric polymer poly(vinylidene fluoride) and its copolymers, which condense via weak van der Waals (vdW) interaction and show negative piezoelectricity. Here we report quantitative determination of giant intrinsic negative longitudinal piezoelectricity and electrostriction in another class of vdW solids-two-dimensional (2D) layered ferroelectric CuInP2S6. With the help of single crystal x-ray crystallography and density-functional theory calculations, we unravel the atomistic origin of negative piezoelectricity in this system, which arises from the large displacive instability of Cu ions coupled with its reduced lattice dimensionality. Furthermore, the sizable piezoelectric response and negligible substrate clamping effect of the 2D vdW piezoelectric materials warrant their great potential in nanoscale, flexible electromechanical devices.
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