钙钛矿(结构)
铁电性
点反射
材料科学
凝聚态物理
手性(物理)
热电性
圆极化
相变
电场
圆二色性
光电子学
化学物理
光学
对称性破坏
物理
化学
结晶学
自发对称破缺
电介质
量子力学
Nambu–Jona Lasinio模型
微带线
作者
Yang Hu,Fred Florio,Zhizhong Chen,W. Adam Phelan,Maxime A. Siegler,Zhe Zhou,Yuwei Guo,Ryan Hawks,Jie Jiang,Jing Feng,Lifu Zhang,Baiwei Wang,Yiping Wang,Daniel Gall,Edmund F. Palermo,Zonghuan Lu,Xin Sun,Toh‐Ming Lu,Hua Zhou,Yang Ren
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2020-02-28
卷期号:6 (9): eaay4213-eaay4213
被引量:214
标识
DOI:10.1126/sciadv.aay4213
摘要
Spin and valley degrees of freedom in materials without inversion symmetry promise previously unknown device functionalities, such as spin-valleytronics. Control of material symmetry with electric fields (ferroelectricity), while breaking additional symmetries, including mirror symmetry, could yield phenomena where chirality, spin, valley, and crystal potential are strongly coupled. Here we report the synthesis of a halide perovskite semiconductor that is simultaneously photoferroelectricity switchable and chiral. Spectroscopic and structural analysis, and first-principles calculations, determine the material to be a previously unknown low-dimensional hybrid perovskite (R)-(-)-1-cyclohexylethylammonium/(S)-(+)-1 cyclohexylethylammonium) PbI3. Optical and electrical measurements characterize its semiconducting, ferroelectric, switchable pyroelectricity and switchable photoferroelectric properties. Temperature dependent structural, dielectric and transport measurements reveal a ferroelectric-paraelectric phase transition. Circular dichroism spectroscopy confirms its chirality. The development of a material with such a combination of these properties will facilitate the exploration of phenomena such as electric field and chiral enantiomer-dependent Rashba-Dresselhaus splitting and circular photogalvanic effects.
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