Detrapping of the carriers from shallow states in a highly responsive, fast, broadband (UV-vis-NIR), self-powered SnSe/Si photodetector with asymmetric metal electrodes

Kumar, Manoj and Rani, Sanju and Gour, Kuldeep Kumar and Kumar, Kapil and Yadav, Reena and Husale, Sudhir and Kumar, Mahesh and Singh, Vidya Nand (2024) Detrapping of the carriers from shallow states in a highly responsive, fast, broadband (UV-vis-NIR), self-powered SnSe/Si photodetector with asymmetric metal electrodes. Materials Advances, 5. pp. 3220-3227.

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Official URL/DOI: http://10.1039/d3ma01127e

Abstract

Tin-selenide (SnSe), as an eco-friendly and low-cost semiconductor material, has exhibited great potential to detect weak signals and has wide applications in imaging and optical communication. Here, self-powered SnSe-based photodetectors (PDs) via asymmetric metal electrodes are fabricated to achieve weak light detection for broad spectral ranges from 385 to 1064 nm with high response and
fast response (on/off) times. The results show that the SnSe PDs are highly sensitive in a wide spectral range from UV to NIR, even at 0 V applied bias. They exhibit an excellent responsivity (R) of 54.7 mA W1 and detectivity (D) of 7.87 1010 Jones, corresponding to rise/decay times of 26/47 ms
under 1064 nm illumination at 0 V applied bias, respectively. With increasing the bias, detrapping of the
carriers can be seen from the shallow trap states arising from the secondary phases in the SnSe. The results suggest that SnSe-based PDs obtained from the evaporation method have great potential in developing low-cost, next generation, and self-powered optoelectronics.

Item Type: Article
Uncontrolled Keywords: Detrapping; Graphene; Photodetector; SnSe/Si
Subjects: Materials Science > Materials Charcterization
Divisions: Material Science and Technology
Depositing User: Head IMDC
Date Deposited: 04 Apr 2025 07:04
Last Modified: 04 Sep 2026 02:12
URI: http://eprints.nmlindia.org/id/eprint/9714

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