Photocurrent Generation and Collection in a WSe2-Based Composite Detector
作者:Yulin Zhu, Ni Sheng, Fengyi Zhu, Z. Hu, Changyi Pan, Xuhao Fan, Yuhang Ma, Shuangli Mi, Changlong Liu, Weiwei Tang, Guanhai Li, Xiaoshuang Chen · 发表于:Coatings · 年份:2025 · DOI:10.3390/coatings15060672 · 被引用次数:4 · 研究领域:2D Materials and Applications、Gas Sensing Nanomaterials and Sensors、Advanced Thermoelectric Materials and Devices
Two-dimensional (2D) van der Waals materials have been actively investigated for broadband, high-sensitivity, low-power-consumption photodetection owing to their highly customizable band structures and fast interfacial charge transfers. Studying photocurrent generation mechanisms provides insights into charge carrier dynamics in WSe2-based detectors, linking spatial factors (e.g., photocurrent generation/collection) with interfacial band alignment. Here, we employ scanning photocurrent microscopy to spatially resolve the processes of photocurrent generation and collection in WSe2-based composite structures. Photocurrent polarity and magnitude at interface reflects interfacial band alignment and potential gradients at metal–WSe2 and WSe2–In2Se3 junctions. Strong electric fields at metal–WSe2 interfaces drive more efficient electron–hole separation and yield higher photocurrents, compared with WSe2–In2Se3 interfaces. The photodetector exhibits broadband detection capabilities from visible to infrared light, achieving a high responsivity of 17.7 A/W and an excellent detectivity of 3.7 × 1012 Jones, as well as fast response times of <113 µs. Furthermore, object imaging with a resolution better than 0.5 mm was successfully demonstrated, highlighting the potential of this photoresponse for practical imaging applications. This work reveals that photocurrent is distributed with a clear dependence on device configuration, offering a new avenue for optimizing 2D material-based photo...