不对称
凝聚态物理
材料科学
光伏系统
极化(电化学)
反铁电性
叠加原理
极化
电压
光电效应
偏压
符号(数学)
光电子学
物理
铁电性
化学
量子力学
电气工程
电介质
数学
工程类
数学分析
物理化学
作者
S. Semak,V. Kapustianyk,Yu. Eliyashevskyy,O. Bovgyra,Mariya Kovalenko,U. Mostovoi,Bernard Doudin,B. Kundys
标识
DOI:10.1088/1361-648x/aca579
摘要
Abstract Despite symmetrical polarization, the magnitude of a light-induced voltage is known to be asymmetric with respect to poling sign in many photovoltaic (PV) ferroelectrics (FEs). This asymmetry remains unclear and is often attributed to extrinsic effects. We show here for the first time that such an asymmetry can be intrinsic, steaming from the superposition of asymmetries of internal FE bias and electro-piezo-strictive deformation. This hypothesis is confirmed by the observed decrease of PV asymmetry for smaller FE bias. Moreover, the both PV effect and remanent polarization are found to increase under vacuum-induced expansion and to decrease for gas-induced compression, with tens percents tunability. The change in cations positions under pressure is analysed through the first-principle density functional theory calculations. The reported properties provide key insight for FE-based solar elements optimization.
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