High-Performance Near-Infrared Perovskite Single-Crystal Photodetectors Enabled by Multifunctional Additive Engineering for Image Encryption

Abstract Iodide-based metal halide perovskite single crystals are promising candidates for near-infrared photodetection because of their favorable bandgaps and outstanding optoelectronic characteristics. However, iodide oxidation during crystallization deteriorates precursor stability, crystal quality, and device performance. Herein, potassium formate is introduced as a multifunctional additive that simultaneously suppresses iodide oxidation, passivates vacancy-related defects, and inhibits ion migration. As a result, the optimized crystal achieves an ultralow trap-state density of 5.23 × 108 cm–3, approaching the best values reported for perovskite single crystals. The corresponding photodetector shows a narrowband response centered at 800 nm, a specific detectivity of 1.14 × 1011 Jones, and a wide linear dynamic range of 146 dB. It also enables reliable image encryption with strong resistance to visible-light interference, a capability that is difficult to realize with conventional broadband photodetectors. These findings provide a practical route toward stable near-infrared photodetection for secure optical information processing.

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Publication Details

Journal
The Journal of Physical Chemistry Letters
Published
2026-10-08
DOI
https://doi.org/10.1021/acs.jpclett.6c03092
Primary Topic
Perovskite Materials and Applications
Type
article
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article

High-Performance Near-Infrared Perovskite Single-Crystal Photodetectors Enabled by Multifunctional Additive Engineering for Image Encryption

Liang Shen, Guohua Wang, Hongyu Bian, Xin Zhao et al.
The Journal of Physical Chemistry Letters
Perovskite Materials and Applications
article

High-Performance Near-Infrared Perovskite Single-Crystal Photodetectors Enabled by Multifunctional Additive Engineering for Image Encryption

Liang Shen, Guohua Wang, Hongyu Bian, Xin Zhao, Xinren Zhang, Qiuxu Lin, xiaohan lai, Ying Xin, Wei Wei
article en

Abstract

Abstract Iodide-based metal halide perovskite single crystals are promising candidates for near-infrared photodetection because of their favorable bandgaps and outstanding optoelectronic characteristics. However, iodide oxidation during crystallization deteriorates precursor stability, crystal quality, and device performance. Herein, potassium formate is introduced as a multifunctional additive that simultaneously suppresses iodide oxidation, passivates vacancy-related defects, and inhibits ion migration. As a result, the optimized crystal achieves an ultralow trap-state density of 5.23 × 108 cm–3, approaching the best values reported for perovskite single crystals. The corresponding photodetector shows a narrowband response centered at 800 nm, a specific detectivity of 1.14 × 1011 Jones, and a wide linear dynamic range of 146 dB. It also enables reliable image encryption with strong resistance to visible-light interference, a capability that is difficult to realize with conventional broadband photodetectors. These findings provide a practical route toward stable near-infrared photodetection for secure optical information processing.

The Journal of Physical Chemistry Letters
Jilin University (CN)
Openalex Percentile: Top 23%
Perovskite Materials and Applications
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High-Performance Near-Infrared Perovskite Single-Crystal Photodetectors Enabled by Multifunctional Additive Engineering for Image Encryption — Liang Shen, Guohua Wang, et al. · The Journal of Physical Chemistry Letters (2026) | TGRS Research Map | TGRS