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基于具有超高光开/关比和快速响应速度的范德华异质结构的单极势垒光电探测器。

Unipolar Barrier Photodetectors Based on Van Der Waals Heterostructure with Ultra-High Light On/Off Ratio and Fast Speed.

作者信息

Wang Suofu, Wang Xiuxiu, Wang Wenhui, Han Tao, Li Feng, Shan Lei, Long Mingsheng

机构信息

Information Materials and Intelligent Sensing Laboratory of Anhui Province, Key Laboratory of Structure and Functional Regulation of Hybrid Materials of Ministry of Education, Institutes of Physical Science and Information Technology, Anhui University, 111 Jiu Long Road, Hefei, 230601, China.

School of Physics, Southeast University, Nanjing, 211189, China.

出版信息

Adv Sci (Weinh). 2025 Feb;12(8):e2413844. doi: 10.1002/advs.202413844. Epub 2025 Jan 4.

Abstract

Unipolar barrier architecture is designed to enhance the photodetector's sensitivity by inducing highly asymmetrical barriers, a higher barrier for blocking majority carriers to depressing dark current, and a low minority carrier barrier without impeding the photocurrent flow through the channel. Depressed dark current without block photocurrent is highly desired for uncooled Long-wave infrared (LWIR) photodetection, which can enhance the sensitivity of the photodetector. Here, an excellent unipolar barrier photodetector based on multi-layer (ML) graphene (G) is developed, WSe, and PtSe (G-WSe-PtSe) van der Waals (vdW) heterostructure, in which extremely low dark current of 1.61×10 A, a record high light on/off ≈10 are demonstrated at 0 V. Notably, the device exhibits ultrafast response speed with rise time τ = 699 ns and decay time τ = 452 ns and high-power conversion efficiency (η) of 4.87%. The heterostructure demonstrates a broadband photoresponse from 365 nm to LWIR 10.6 µm at room temperature. Notably, the G-WSe-PtSe nBn device demonstrates high photoresponsivity (R) of 1.8 AW with 10.6 µm laser at 1 V bias in ambient air. This unipolar barrier device architecture offers an alternative way for highly sensitive free space communication.

摘要

单极势垒结构旨在通过引入高度不对称的势垒来提高光电探测器的灵敏度,即一个较高的势垒用于阻挡多数载流子以降低暗电流,以及一个低的少数载流子势垒而不妨碍光电流通过通道。对于非制冷长波红外(LWIR)光电探测而言,降低暗电流而不阻挡光电流是非常理想的,这可以提高光电探测器的灵敏度。在此,基于多层(ML)石墨烯(G)、WSe₂和PtSe₂(G-WSe₂-PtSe₂)范德华(vdW)异质结构开发了一种优异的单极势垒光电探测器,其中在0 V时展示出极低的暗电流1.61×10⁻⁶ A,创纪录的高光开/关比≈10⁵。值得注意的是,该器件具有超快的响应速度,上升时间τ = 699 ns,衰减时间τ = 452 ns,以及4.87%的高功率转换效率(η)。该异质结构在室温下展示出从365 nm到LWIR 10.6 µm的宽带光响应。值得注意的是,G-WSe₂-PtSe₂ nBn器件在环境空气中1 V偏压下,对于10.6 µm激光表现出1.8 A/W的高光响应率(R)。这种单极势垒器件结构为高灵敏度自由空间通信提供了一种替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d02/11848579/19183a5e1885/ADVS-12-2413844-g004.jpg

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