光探测
半导体
铁电性
材料科学
光电效应
极化(电化学)
光电子学
光伏系统
光学
光电探测器
物理
电介质
化学
物理化学
生态学
生物
作者
Dong Li,Jing‐Kai Qin,Bingxuan Zhu,Ling-Qing Yue,Pei‐Yu Huang,Chengyu Zhu,Feichi Zhou,Liang Zhen,Cheng‐Yan Xu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2024-03-18
卷期号:18 (13): 9636-9644
被引量:4
标识
DOI:10.1021/acsnano.4c00382
摘要
A two-dimensional (2D) ferroelectric semiconductor, which is coupled with photosensitivity and room-temperature ferroelectricity, provides the possibility of coordinated conductance modulation by both electric field and light illumination and is promising for triggering the revolution of optoelectronics for monolithic multifunctional integration. Here, we report that semiconducting Sn2P2S6 crystals can be achieved in a 2D morphology using a chemical vapor transport approach with the assistant of space confinement and experimentally demonstrate the robust ferroelectricity in atomic-thin Sn2P2S6 nanosheet at room temperature. The intercorrelated programming of ferroelectric order along out-of-plane (OOP) and in-plane (IP) directions enables a tunable bulk photovoltaic (BPV) effect through multidirectional electrical control. By combining the capability of anisotropic in-plane optical absorption, a highly integrated Sn2P2S6 optoelectronic device vertically sandwiched with graphene electrodes yields the polarization-dependent open-circuit photovoltage with a dichroic ratio of 2.0 under 405 nm light illumination. The reintroduction of ferroelectric Sn2P2S6 to the 2D asymmetric semiconductor family provides possibilities to hardware implement of the self-powered polarization-sensitive photodetection and spotlights the promising applications for next-generation photovoltaic devices.
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