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Updated: Sep 19, 2026

A Protocol for Real-time 3D Single Particle Tracking
Published on: January 3, 2018
High-performance CsSnI3 quadrant photodetector enabled by a competitive molecular strategy for precision light-spot
Xinren Zhang1, Jizhong Jiang2,3,4, Hang-Ming Zhang2,3,4
1State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, College of Integrated Circuits, International Center of Future Science, Jilin University, Changchun, China.
Abstract:
Sn-based metal halide perovskites are promising next-generation materials for visible and near-infrared photodetection due to their eco-friendly nature and low-temperature processability. However, the accompanying challenge of Sn2+ oxidation has been restricting the operational stability. Herein, we mitigate this limitation through a competitive molecular strategy targeting solvent oxidation pathways, utilizing amino-functionalized 4-tetradecylaniline (4-TCA) to coordinate with Sn2+ sites. The incorporation of 4-TCA reduces the trap density and enhances the crystallinity of CsSnI3 films, leading to significantly improved optoelectronic properties. As such, we develop high-performance CsSnI3 perovskite photodetectors that retain nearly unchanged performance after 18 h. Our detectors exhibit a high responsivity of 354 mA W-1 under zero bias and a rise time of 2.6 μs, comparable to state-of-the-art Pb2+-free perovskite photodetectors. We further demonstrate the device potential by developing the first perovskite quadrant photodetector, capable of resolving a 30 μm light-spot displacement and highlighting the promise of CsSnI3 for position-sensitive photodetection.
