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无铅双钙钛矿单晶中的贵金属掺杂:实现近红外到X射线的宽带光电探测

Noble Metals Doping in Lead-Free Double Perovskite Single Crystals: Achieving Near-Infrared to X-ray Broadband Photodetection.

作者信息

Valli Donato, Vanden Brande Roel, Herreman Vincent, Li Qianrui, Romolini Giacomo, Chen Jim Jui-Kai, Shameem K M Muhammed, Van Hout Bob, Sun Li, Zhao Qing, Pradhan Bapi, Hofkens Johan, Debroye Elke

机构信息

Department of Chemistry KU Leuven Celestijnenlaan 200F Heverlee 3001 Belgium.

Department of Chemistry University of Copenhagen Universitetsparken 5 DK-2100 Copenhagen Denmark.

出版信息

Small Sci. 2025 Jun 23;5(8):2500135. doi: 10.1002/smsc.202500135. eCollection 2025 Aug.

Abstract

Semiconductor materials capable of broadband photodetection, spanning X-rays to near-infrared (NIR), are essential for applications in medical imaging, industrial inspection, security, and telecommunications. Conventional photodetectors like Si, Ge, InGaAs, and amorphous Se (a-Se) often encounter tradeoffs in efficiency or cost-effectiveness. Halide perovskites (HPs) offer competitive or superior optoelectronic properties with low-cost, solution-based processing. However, lead-based HPs pose toxicity and stability challenges, while lead-free tin-based HPs suffer from Sn oxidation and structural degradation. The lead-free double perovskite CsAgBiBr has emerged as a stable, nontoxic alternative for X-ray and visible-light photodetection. Despite its advantages, its high bandgap (≈1.9 eV) limits NIR absorption. This study explores doping CsAgBiBr with noble metal cations (Au, Pd, and Ir) to lower its absorption onset and enhance its photodetection capabilities across a broad spectrum. The results demonstrate that noble metal doping can overcome the intrinsic limitations of pristine CsAgBiBr, enabling efficient photodetection from X-rays to the NIR range. This approach highlights a viable pathway for developing next-generation broadband photodetectors that combine nontoxicity, stability, and wide-spectrum sensitivity.

摘要

能够进行从X射线到近红外(NIR)的宽带光电探测的半导体材料,对于医学成像、工业检测、安全和电信等应用至关重要。传统的光电探测器,如硅、锗、铟镓砷和非晶硒(a-Se),在效率或成本效益方面常常面临权衡。卤化物钙钛矿(HPs)具有低成本、基于溶液的加工工艺,展现出具有竞争力或更优越的光电特性。然而,基于铅的HPs存在毒性和稳定性挑战,而无铅锡基HPs则存在锡氧化和结构降解问题。无铅双钙钛矿CsAgBiBr已成为用于X射线和可见光光电探测的稳定、无毒替代品。尽管它具有优势,但其高带隙(≈1.9 eV)限制了近红外吸收。本研究探索用贵金属阳离子(金、钯和铱)掺杂CsAgBiBr,以降低其吸收起始点并增强其在宽光谱范围内的光电探测能力。结果表明,贵金属掺杂可以克服原始CsAgBiBr的固有局限性,实现从X射线到近红外范围的高效光电探测。这种方法为开发结合了无毒、稳定性和宽光谱灵敏度的下一代宽带光电探测器,凸显了一条可行的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b727/12362788/28f04c6a2c6e/SMSC-5-2500135-g002.jpg

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