各向异性
光探测
范德瓦尔斯力
凝聚态物理
材料科学
半导体
极化(电化学)
响应度
光电子学
光电探测器
Valleytronics公司
石墨烯
晶体结构
光学各向异性
Crystal(编程语言)
电子结构
等离子体子
光电导性
格子(音乐)
宽禁带半导体
点反射
平面的
光子晶体
异质结
单晶
作者
Shun Wang,Zhou Zhou,Xin Wang,Zhida Han,Yong Fang,Yiqi Hu,Qiankun Li,Lu You,Yuyan Weng,Liang Fang
摘要
High-performance polarization-sensitive photodetectors have attracted significant attention in optoelectronics. Low-dimensional semiconductors with asymmetric crystal lattices are ideal polarization detection media due to their inherent optical and electronic anisotropies. Among them, the emerging quasi-one-dimensional van der Waals metal phosphorus sulfide, Nb4P2S21, exhibits prominent in-plane optical anisotropy and broad UV-visible light absorption. To validate its application potential for polarization-sensitive photodetection, herein, the anisotropic lattice vibrational and optical characteristics of Nb4P2S21 were systemically investigated by angle-resolved polarized Raman, transmission, and reflection spectroscopies. Leveraging these properties, we fabricate a planar two-terminal Nb4P2S21-based photodetector, which demonstrates a stable broadband photoresponse and pronounced polarization sensitivity, delivering a responsivity of 0.29 mA W−1 and a high anisotropic ratio of 2.53 at 405 nm. Beyond revealing fundamental correlations between crystal symmetry and optical response, these findings establish Nb4P2S21 as a promising candidate for next-generation polarization-sensitive optoelectronic devices.
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