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Significant Suppression of Dark Current in a Surface Acoustic Wave Assisted MoS2 Photodetector.

Authors :
Zhao, Qianru
Yan, Haoran
Wang, Xudong
Chen, Yan
Zhang, Shukui
Wu, Shuaiqin
Huang, Xinning
Di, Yunxiang
Xiong, Ke
Zeng, Jinhua
Jiao, Hanxue
Lin, Tie
He, Hu
Ge, Jun
Meng, Xiangjian
Shen, Hong
Chu, Junhao
Wang, Jianlu
Source :
Advanced Electronic Materials; Dec2023, Vol. 9 Issue 12, p1-7, 7p
Publication Year :
2023

Abstract

2D materials are considered as potential candidates for the next generation of optoelectronic materials. However, their optical absorption is typically weak due to thickness limitations, greatly restricting the photodetection capabilities of devices. To enhance the photoelectric gain of 2D materials or devices and improve detection sensitivity, various modulation methods such as strain, electric field, and magnetic field are commonly introduced. Among them, surface acoustic wave (SAW) represents a unique and effective modulation approach. In this study, photodetectors are fabricated based on few‐layer MoS2 on a SAW delay line on a LiTaO3 substrate. The interaction between SAW and MoS2 successfully manipulates the optoelectronic performance of the MoS2‐based devices. Under the influence of SAW, the dark current of the devices is significantly reduced by more than two orders of magnitude, while the photocurrent remains almost unchanged, resulting in excellent photoresponse performance. The devices provide a promising pathway for high‐performance optoelectronic applications and reveal a new possibility for acoustic devices in optoelectronics. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
2199160X
Volume :
9
Issue :
12
Database :
Complementary Index
Journal :
Advanced Electronic Materials
Publication Type :
Academic Journal
Accession number :
174108184
Full Text :
https://doi.org/10.1002/aelm.202300496