响应度
光电探测器
材料科学
光电子学
异质结
吸收(声学)
比探测率
光功率
光学
激光器
物理
复合材料
作者
Yanjie Hu,Xiaohui Song,Dongliang Jia,Wanhan Su,Xiaojing Lv,Lin Li,Xueping Li,Yong Yan,Yurong Jiang,Congxin Xia
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2023-05-17
卷期号:31 (12): 19804-19804
被引量:4
摘要
Self-driven photodetectors, which can detect optical signals without external voltage bias, are highly attractive in the field of low-power wearable electronics and internet of things. However, currently reported self-driven photodetectors based on van der Waals heterojunctions (vdWHs) are generally limited by low responsivity due to poor light absorption and insufficient photogain. Here, we report p-Te/n-CdSe vdWHs utilizing non-layered CdSe nanobelts as efficient light absorption layer and high mobility Te as ultrafast hole transporting layer. Benefiting from strong interlayer coupling, the Te/CdSe vdWHs exhibit stable and excellent self-powered characteristics, including ultrahigh responsivity of 0.94 A W -1 , remarkable detectivity of 8.36 × 10 12 Jones at optical power density of 1.18 mW cm -2 under illumination of 405 nm laser, fast response speed of 24 µs, large light on/off ratio exceeding 10 5 , as well as broadband photoresponse (405-1064 nm), which surpass most of the reported vdWHs photodetectors. In addition, the devices display superior photovoltaic characteristics under 532 nm illumination, such as large V oc of 0.55 V, and ultrahigh I sc of 2.73 µA. These results demonstrate the construction of 2D/non-layered semiconductor vdWHs with strong interlayer coupling is a promising strategy for high-performance and low-power consumption devices.
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