光电探测器
光电流
材料科学
光探测
光电子学
各向异性
拉曼光谱
硒化物
极化(电化学)
凝聚态物理
光学
物理
化学
物理化学
冶金
硒
作者
Zhinan Guo,Rui Cao,Huide Wang,Xi Zhang,Fanxu Meng,Xue Chen,Siyan Gao,David K. Sang,Thi Huong Nguyen,Anh Tuan Duong,Jinlai Zhao,Y. J. Zeng,Sunglae Cho,Bing Zhao,Ping‐Heng Tan,Han Zhang,Dianyuan Fan
摘要
Two-dimensional (2D) indium selenide (InSe) has been widely studied for application in transistors and photodetectors, which benefit from its excellent optoelectronic properties. Among the three specific polytypes (γ-, ϵ- and β-phase) of InSe, only the crystal lattice of InSe in β-phase (β-InSe) belongs to a non-symmetry point group of [Formula: see text], which indicates stronger anisotropic transport behavior and potential in the polarized photodetection of β-InSe-based optoelectronic devices. Therefore, we prepare the stable p-type 2D-layered β-InSe via temperature gradient method. The anisotropic Raman, transport and photoresponse properties of β-InSe have been experimentally and theoretically proven, showing that the β-InSe-based device has a ratio of 3.76 for the maximum to minimum dark current at two orthogonal orientations and a high photocurrent anisotropic ratio of 0.70 at 1 V bias voltage, respectively. The appealing anisotropic properties demonstrated in this work clearly identify β-InSe as a competitive candidate for filter-free polarization-sensitive photodetectors.
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