Interfacial Engineering of Selenium‐Based Photodiodes for Extremely Low‐Noise Photodetection and Single‐Pixel Imaging

Author:

Bai Songxue1,Li Ruiming1,Jia Zhenglin1,Yu Bin1,Yao Fang1,Liu Yong1,Liu Hailin1,Wang Du2,Lei Cheng2,Wang Zhiping134,Lin Qianqian1ORCID

Affiliation:

1. Key Lab of Artificial Micro‐ and Nano‐Structures of Ministry of Education of China School of Physics and Technology Hubei Luojia Laboratory Wuhan University Wuhan 430072 China

2. The Institute of Technological Sciences Wuhan University Wuhan 430072 China

3. Wuhan Institute of Quantum Technology Wuhan 430206 China

4. School of Microelectronics Wuhan University Wuhan 430072 China

Abstract

AbstractSelenium as one of the most historical semiconductors has been used for photovoltaics and photodetection, thanks to its excellent optoelectronic properties, superior stability, facile and low‐cost fabrication. However, commercialized Se‐based devices are mainly based on its amorphous state, which significantly limits the charge transport and requires relatively large bias voltage. The charge carrier dynamics of high‐performance crystalline Se thin films are barely reported, and related photodiodes have not been realized mainly limited by the large dark current and slow response speed. Here, poly‐crystalline Se thin films via vacuum evaporation, in situ thermal annealing, and engineered the interfaces with various metal electrodes are fabricated, which resulted in enhanced charge transport properties and reduced device leakage. The optimized Se photodiodes exhibited excellent performance metrics, including extremely low dark current density, decent specific detectivity, and superior stability. Furthermore, the optimized Se photodetectors are also introduced for single‐pixel imaging, which demonstrates excellent sensitivity and great potential for real applications.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Wiley

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