光探测
材料科学
红外线的
各向异性
光电子学
光学
光电探测器
物理
作者
Shicong Hou,Shi Zhang,Kening Xiao,Zhang Yong,Yuanfeng Wen,Libo Zhang,Xuguang Guo
出处
期刊:FlatChem
[Elsevier]
日期:2024-07-01
卷期号:46: 100694-100694
标识
DOI:10.1016/j.flatc.2024.100694
摘要
Miniaturized and stabilized polarization-sensitive mid-Infrared photodetectors at room temperature are indispensable in fields ranging from medical diagnostics to military surveillance in the next-generation on-chip polarimeters. Emerging two-dimensional materials offer a promising avenue to fulfill these requirements, facilitated by their ease of integration onto complex structures, inherent in-plane anisotropic crystal structures that enhance polarization sensitivity, and robust quantum confinement effects that enable superior photodetection performance at room temperature. Here, we report the systematic investigation of polarization-dependent infrared photoresponse based on Ta2NiSe5, revealing significant anisotropy photocurrent with excellent stability at room temperature. Significantly, a large anisotropic ratio of Ta2NiSe5 ensures the polarization sensitivity achieves a ratio of 1.23 at 1550 nm. Moreover, at 4.6 μm, the device exhibits a peak photocurrent response of 1.16 A/W along the armchair orientation, with an anisotropy ratio of approximately 3.3. These findings not only enhance our understanding of the photophysical mechanisms in two-dimensional materials but also guide the optimization of photodetector design for enhanced performance.
科研通智能强力驱动
Strongly Powered by AbleSci AI