异质结
响应度
光电子学
材料科学
光电探测器
紫外线
光电效应
比探测率
半导体
化学气相沉积
红外线的
量子效率
光伏系统
量子阱
光学
物理
生物
激光器
生态学
作者
San-Ni Zhao,Xiurong Ma,Xuanhao Cao,Zehong Lei,Yibin Yang,Lili Tao,Zhaoqiang Zheng,Xing Feng,Yu Zhao
标识
DOI:10.3389/fmats.2023.1162166
摘要
Due to its good p-type semiconductor characteristics, MnSe has a great application prospect in high-performance electronic and optoelectronic devices. However, heterojunctions of MnSe still need to be deeply studied to improve its electrical and photoelectric properties. Here, it is reported that the two-dimensional (2D) MnSe/WSe 2 heterojunction is structured by the non-layered MnSe nanosheets synthesized by chemical vapor deposition (CVD) method and the mechanically exfoliated layered WSe 2 . The heterojunction device exhibits a rectification effect and a current on/off ratio of 6,557. Meanwhile, it has a broad spectral range response from ultraviolet (UV) to short-wave infrared radiation (SWIR) (300–2,200 nm), and achieves an ultra-high responsivity of 156 A/W, along with an excellent detectivity of 2.21 × 10 12 jones, and an outstanding external quantum efficiency (EQE) of 36,400%. Moreover, the type II band alignment and the built-in potential in the MnSe/WSe 2 heterojunction can facilitate the separation of the photoexcited electron-hole pairs, which enables the significant photovoltaic characteristics and self-powered photoswitching response. This work reveals the novel performance of the 2D MnSe/WSe 2 heterojunction and a great potential in photoswitching, photodetector, and photovoltaic applications.
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