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Research Article | Open Access

Perovskite defect passivation for efficient photon-counting detector

Wenjie Luo1,2,6,§Pengshuo Gan2,3,§Binyun Han2Kaixin Huang3Xingzhou Su1,2,6Wenxuan Yang1,2Qing Zhong3Hao Huang2Yang Zhang2Xue-Feng Yu2Yongfeng Yang2,4Chang Liu3 ( )Zheng Liu2,4 ( )Wenhua Zhou2,4 ( )Yanliang Liu2,4,5 ( )
Southern University of Science and Technology, Shenzhen 518055, China
Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China
Engineering and Research Center for Integrated New Energy Photovoltaics & Energy Storage Systems of Hunan Province, School of Electrical Engineering, University of South China, Hengyang 421001, China
Key Laboratory of Biomedical Imaging Science and System, Chinese Academy of Sciences, Shenzhen 518055, China
Hong Kong Institute of Science & Innovation, Chinese Academy of Sciences, Hong Kong 999077, China
Shenzhen University of Advanced Technology, Shenzhen 518055, China

§ Wenjie Luo and Pengshuo Gan contributed equally to this work.

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Abstract

Although metal halide perovskites have advanced rapidly in photoelectrical detection, studies on perovskite-based photon-counting detector remain scarce. This study reports an efficient perovskite photon-counting detector achieved through defect passivation of the perovskite photosensitive layer. Urea, a Lewis base, was introduced as an additive during the two-step fabrication of MAPbI3 films, forming a complex (MAI·PbI2·O=C(NH2)2, where MAI = methylammonium iodide) that slowed the reaction rate and promoted complete reaction between MAI and PbI2. Compared to conventional perovskite films, the optimized MAPbI3 film exhibits enhanced crystallinity, with enlarged grain size from 254.8 to 908.1 nm, and reduced defect density from 9.08 × 1015 to 3.89 × 1015 cm−3. The resulting MAPbI3 photodiode detector demonstrates satisfactory performance, achieving a responsivity of 0.4 A/W and a sensitivity of 2.39 × 1013 Jones under 17.02 μW/cm2 illumination. Furthermore, a photon-counting system integrated with the MAPbI3 photodetector was able to detect low light levels down to 2.01 × 103 photons per mm2, with a photoresponse three times higher than that of silicon-based photon-counting detector.

Graphical Abstract

Perovskite photon-counting detectors are achieved via urea additive, enabling enlarged grains and defect passivation. The optimized device demonstrates superior weak-light detection, outperforming silicon-based counterparts.

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Nano Research
Article number: 94908490

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Cite this article:
Luo W, Gan P, Han B, et al. Perovskite defect passivation for efficient photon-counting detector. Nano Research, 2026, 19(6): 94908490. https://doi.org/10.26599/NR.2026.94908490
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Received: 10 December 2025
Revised: 06 January 2026
Accepted: 25 January 2026
Published: 27 April 2026
© The Author(s) 2026. Published by Tsinghua University Press.

This is an open access article under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0, https://creativecommons.org/licenses/by/4.0/).