Lead-Free Bismuth-Based Perovskite X‑ray Detector with High Sensitivity and Low Detection Limit

Bismuth-based halide perovskites have shown great potential for direct X-ray detection, attributable to their nontoxicity and advantages in detection sensitivity and spatial resolution. However, the practical application of such materials still faces the critical challenge of combining both high sen...

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Veröffentlicht in:ACS applied materials & interfaces 2024-07, Vol.16 (29), p.38283-38289
Hauptverfasser: Zhao, Zihao, Fan, Qingshun, Liu, Yi, Rong, Hao, Ni, Huaimin, Wei, Linjie, Zhao, Xianmei, Luo, Junhua, Sun, Zhihua
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container_end_page 38289
container_issue 29
container_start_page 38283
container_title ACS applied materials & interfaces
container_volume 16
creator Zhao, Zihao
Fan, Qingshun
Liu, Yi
Rong, Hao
Ni, Huaimin
Wei, Linjie
Zhao, Xianmei
Luo, Junhua
Sun, Zhihua
description Bismuth-based halide perovskites have shown great potential for direct X-ray detection, attributable to their nontoxicity and advantages in detection sensitivity and spatial resolution. However, the practical application of such materials still faces the critical challenge of combining both high sensitivity and low detection limits. Here, we report a new type of zero-dimensional (0D) perovskite (HIS)­BiI5 (1, where HIS2+ = histamine) with high sensitivity and a low detection limit. Structurally, the strong N–H···I hydrogen bonds between HIS2+ cations and inorganic frameworks enhance the rigidity of the structure and diminish the intermolecular distance between adjacent inorganic [Bi2I10]4– dimers. By virtue of such structural merits, single crystal 1 exhibits excellent physical properties perpendicular to both the (001) and (010) faces. Perpendicular to the (010) face, 1 exhibited a high electrical resistivity (2.31 × 1011 Ω cm) and a large carrier mobility–lifetime product (μτ) (2.81 × 10–4 cm2 V–1) under X-ray illumination. Benefiting from these superior physical properties, it demonstrates an excellent X-ray detection capability with a sensitivity of approximately 103 μC Gyair –1 cm–2 and a detection limit of 36 nGyair s–1 in both directions perpendicular to the (001) and (010) crystal faces. These results provide a promising candidate material for the development of new, lead-free, high-performance X-ray detectors.
doi_str_mv 10.1021/acsami.4c08648
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However, the practical application of such materials still faces the critical challenge of combining both high sensitivity and low detection limits. Here, we report a new type of zero-dimensional (0D) perovskite (HIS)­BiI5 (1, where HIS2+ = histamine) with high sensitivity and a low detection limit. Structurally, the strong N–H···I hydrogen bonds between HIS2+ cations and inorganic frameworks enhance the rigidity of the structure and diminish the intermolecular distance between adjacent inorganic [Bi2I10]4– dimers. By virtue of such structural merits, single crystal 1 exhibits excellent physical properties perpendicular to both the (001) and (010) faces. Perpendicular to the (010) face, 1 exhibited a high electrical resistivity (2.31 × 1011 Ω cm) and a large carrier mobility–lifetime product (μτ) (2.81 × 10–4 cm2 V–1) under X-ray illumination. Benefiting from these superior physical properties, it demonstrates an excellent X-ray detection capability with a sensitivity of approximately 103 μC Gyair –1 cm–2 and a detection limit of 36 nGyair s–1 in both directions perpendicular to the (001) and (010) crystal faces. 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Mater. Interfaces</addtitle><date>2024-07-24</date><risdate>2024</risdate><volume>16</volume><issue>29</issue><spage>38283</spage><epage>38289</epage><pages>38283-38289</pages><issn>1944-8244</issn><issn>1944-8252</issn><eissn>1944-8252</eissn><abstract>Bismuth-based halide perovskites have shown great potential for direct X-ray detection, attributable to their nontoxicity and advantages in detection sensitivity and spatial resolution. However, the practical application of such materials still faces the critical challenge of combining both high sensitivity and low detection limits. Here, we report a new type of zero-dimensional (0D) perovskite (HIS)­BiI5 (1, where HIS2+ = histamine) with high sensitivity and a low detection limit. Structurally, the strong N–H···I hydrogen bonds between HIS2+ cations and inorganic frameworks enhance the rigidity of the structure and diminish the intermolecular distance between adjacent inorganic [Bi2I10]4– dimers. 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title Lead-Free Bismuth-Based Perovskite X‑ray Detector with High Sensitivity and Low Detection Limit
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