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通过阳离子工程提高CsAgBiBr双钙钛矿单晶的X射线敏感性。

Enhancing the X-ray Sensitivity of CsAgBiBr Double Perovskite Single Crystals through Cation Engineering.

作者信息

Valli Donato, Zhang Heng, Betušiak Marián, Romolini Giacomo, Meulemans Arne, Escudero Daniel, Seth Sudipta, Zhao Qing, Zhu Zonglong, Bonn Mischa, Belas Eduard, Grill Roman, Wang Hai, Hofkens Johan, Debroye Elke

机构信息

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

Max Planck Institute for Polymer Research, Mainz 55128, Germany.

出版信息

ACS Appl Opt Mater. 2024 Sep 26;2(10):2075-2084. doi: 10.1021/acsaom.4c00265. eCollection 2024 Oct 25.

Abstract

Owing to their outstanding optoelectronic properties, halide perovskite (HP) materials have been employed in a wide range of applications, including solar cells, light-emitting devices, and X-ray detectors. Among them, lead-free double HPs are characterized by enhanced stability and reduced toxicity compared with lead-based alternatives. CsAgBiBr, in particular, has emerged as a promising candidate for direct X-ray detection. The detection sensitivity, on the other hand, cannot yet compete with that of lead-containing perovskites. Developing schemes to improve X-ray detection efficiency is critical for reducing radiation exposure in medical imaging applications. Here, we investigate the potential of controlled doping and cation substitution with either lanthanides or small organic cations to improve the X-ray detection performance of CsAgBiBr. Our findings reveal that by growing the perovskite in a slightly Bi-poor and Eu-rich environment, the X-ray sensitivity significantly increases 7-fold (from 17 to 120 μC Gy cm) and simultaneously improves the phototo-dark current ratio (from 2.5 to 29). Additionally, Cs-site substitution with imidazolium remarkably enhances the sensitivity over 10-fold (180 μC Gy cm), and ammonium enhances the phototo-dark current ratio to 37. Terahertz photoconductivity measurements reveal a positive correlation between enhanced X-ray sensitivity and improved charge transport properties (e.g., increased scattering time and, thus, carrier mobility) by doping. This study outlines straightforward strategies for boosting X-ray detection and fundamental photoconductivity in lead-free double HP, with potential implications for broader optoelectronic applications.

摘要

由于其出色的光电特性,卤化物钙钛矿(HP)材料已被广泛应用于包括太阳能电池、发光器件和X射线探测器在内的众多领域。其中,无铅双卤化物钙钛矿的特点是与含铅替代品相比稳定性增强且毒性降低。特别是CsAgBiBr,已成为直接X射线检测的有前途的候选材料。然而,其检测灵敏度尚无法与含铅钙钛矿相竞争。开发提高X射线检测效率的方案对于减少医学成像应用中的辐射暴露至关重要。在此,我们研究了用镧系元素或小有机阳离子进行可控掺杂和阳离子取代以提高CsAgBiBr的X射线检测性能的潜力。我们的研究结果表明,通过在略贫Bi且富Eu的环境中生长钙钛矿,X射线灵敏度显著提高了7倍(从17 μC Gy⁻¹ cm⁻²提高到120 μC Gy⁻¹ cm⁻²),同时提高了光电流与暗电流之比(从2.5提高到29)。此外,用咪唑鎓取代Cs位点可使灵敏度显著提高10倍以上(达到180 μC Gy⁻¹ cm⁻²),而用铵取代可使光电流与暗电流之比提高到37。太赫兹光电导率测量揭示了通过掺杂提高X射线灵敏度与改善电荷传输特性(例如增加散射时间,从而提高载流子迁移率)之间的正相关关系。本研究概述了提高无铅双卤化物钙钛矿X射线检测和基本光电导率的直接策略,对更广泛的光电应用具有潜在意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41c7/11519909/d47d4d28e25d/ot4c00265_0001.jpg

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