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Two-Dimensional Antimony-Based Perovskite- Inspired Materials for High-Performance Self-Powered Photodetectors

机译:二维锑基钙钛矿材料用于高性能自供电光电探测器

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摘要

The ongoing Internet of Things revolution has led to strong demand for low-cost, ubiquitous light sensing based on easy-to-fabricate, self-powered photodetectors. While solution-processable lead-halide perovskites have raised significant hopes in this regard, toxicity concerns have prompted the search for safer, lead-free perovskite-inspired materials (PIMs) with similar optoelectronic potential. Antimony- and bismuth-based PIMs are found particularly promising; however, their self-powered photodetector performance to date has lagged behind the lead-based counterparts. Aiming to realize the full potential of antimony-based PIMs, this study examines, for the first time, the impact of their structural dimensionality on their self-powered photodetection capabilities, with a focus on 2D Cs3Sb2I9-xClx and Rb3Sb2I9 and 0D Cs3Sb2I9. The 2D absorbers deliver cutting-edge self-powered photodetector performance, with a more-than-tenfold increase in external quantum efficiency (up to 55), speed of response (5 kHz), and linear dynamic range (four orders of magnitude) compared to prior self-powered A(3)M(2)X(9) implementations (A(+): monovalent cation; M3+: Sb3+/Bi3+; X-: halide anion). Detailed characterization reveals that such a performance boost originates from the superior carrier lifetimes and reduced exciton self-trapping enabled by the 2D structure. By delivering cutting-edge performance and mechanistic insight, this study represents an important step in lead-free perovskite-inspired optoelectronics toward self-powered, ubiquitous light sensing.
机译:正在进行的物联网革命导致了对基于易于制造的自供电光电探测器的低成本、无处不在的光传感的强烈需求。虽然可溶液加工的卤化铅钙钛矿在这方面带来了巨大的希望,但毒性问题促使人们寻找具有类似光电电位的更安全、无铅的钙钛矿类材料 (PIM)。锑基和铋基PIM特别有前途;然而,迄今为止,他们的自供电光电探测器性能落后于铅基同行。为了充分发挥锑基PIM的潜力,本研究首次研究了锑基PIM的结构维度对其自供电光探测能力的影响,重点关注2D Cs3Sb2I9-xClx和Rb3Sb2I9以及0D Cs3Sb2I9。2D 吸收体提供尖端的自供电光电探测器性能,与之前的自供电 A(3)M(2)X(9) 实现相比,外部量子效率(高达 55%)、响应速度 (>5 kHz) 和线性动态范围(>四个数量级)提高了 10 倍以上 (A(+):单价阳离子;M3+:Sb3+/Bi3+;X-:卤化物阴离子)。详细的表征表明,这种性能提升源于 2D 结构实现的超长载流子寿命和减少的激子自俘获。通过提供尖端的性能和机理见解,这项研究代表了无铅钙钛矿启发的光电子学向自供电、无处不在的光传感迈出的重要一步。

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