Self-Powered Visible–Invisible Multiband Detection and Imaging Achieved Using High-Performance 2D MoTe<sub>2</sub>/MoS<sub>2</sub> Semivertical Heterojunction Photodiodes

光电二极管 材料科学 光电子学 异质结 二极管 整改 光电探测器 红外线的 暗电流 响应度 夜视 光电流 比探测率 光学 同质结 光探测 功率(物理) 物理 量子力学
作者
Jongtae Ahn,Ji Yoon Kang,Jihoon Kyhm,Jong Ho Moon,Min-Ju Kim,Dae-Ro Ahn,Dae Won Kim,Il Jun Ahn,Jong Chun Park,Soohyung Park,Yeonjin Yi,Jin Dong Song,Min S. Park,Seongil Im,Do Kyung Hwang
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:12 (9): 10858-10866 被引量:35
标识
DOI:10.1021/acsami.9b22288
摘要

Two-dimensional (2D) van der Waals (vdW) heterostructures herald new opportunities for conducting fundamental studies of new physical/chemical phenomena and developing diverse nanodevice applications. In particular, vdW heterojunction p-n diodes exhibit great potential as high-performance photodetectors, which play a key role in many optoelectronic applications. Here, we report on 2D MoTe2/MoS2 multilayer semivertical vdW heterojunction p-n diodes and their optoelectronic application in self-powered visible-invisible multiband detection and imaging. Our MoTe2/MoS2 p-n diode exhibits an excellent electrical performance with an ideality factor of less than 1.5 and a high rectification (ON/OFF) ratio of more than 104. In addition, the photodiode exhibits broad spectral photodetection capability over the range from violet (405 nm) to near-infrared (1310 nm) wavelengths and a remarkable linear dynamic range of 130 dB within an optical power density range of 10-5 to 1 W/cm2 in the photovoltaic mode. Together with these favorable static photoresponses and electrical behaviors, very fast photo- and electrical switching behaviors are clearly observed with negligible changes at modulation frequencies greater than 100 kHz. In particular, inspired by the photoswitching results for periodic red (638 nm) and near-infrared (1310 nm) illumination at 100 kHz, we successfully demonstrate a prototype self-powered visible-invisible multiband image sensor based on the MoTe2/MoS2 p-n photodiode as a pixel. Our findings can pave the way for more advanced developments in optoelectronic systems based on 2D vdW heterostructures.

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