材料科学
响应度
光电探测器
异质结
比探测率
范德瓦尔斯力
光电二极管
光电子学
暗电流
量子效率
制作
红外线的
纳米技术
光学
物理
量子力学
医学
病理
分子
替代医学
作者
Jinrong Yao,Fangfang Chen,Juanjuan Li,Junli Du,Di Wu,Yongtao Tian,Cheng Zhang,Xinjian Li,Pei Lin
出处
期刊:Nanotechnology
[IOP Publishing]
日期:2021-07-02
卷期号:32 (41): 415201-415201
被引量:24
标识
DOI:10.1088/1361-6528/ac10e6
摘要
The 2D layered crystals can physically integrate with other non-2D components through van der Waals (vdW) interaction, forming mixed-dimensional heterostructures. As a new elemental 2D material, tellurium (Te) has attracted intense recent interest for high room-temperature mobility, excellent air-stability, and the easiness of scalable synthesis. To date, the Te is still in its research infancy, and optoelectronics with low-power consumption are less reported. Motivated by this, we report the fabrication of a mixed-dimensional vdW photodiode using 2D Te and 1D CdS nanobelt in this study. The heterojunction exhibits excellent self-powered photosensing performance and a broad response spectrum up to short-wave infrared. Under 520 nm wavelength, a high responsivity of 98 mA W−1 is obtained at zero bias with an external quantum efficiency of 23%. Accordingly, the photo-to-dark current ratio and specific detectivity reach 9.2 × 103 and 1.9 × 1011 Jones due to the suppressed dark current. This study demonstrates the promising applications of Te/CdS vdW heterostructure in high-performance photodetectors. Besides, such a mixed-dimensional integration strategy paves a new way for device design, thus expanding the research scope for 2D Te-based optoelectronics.
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