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High-Quality Cs3Cu2I5@PMMA Scintillator Films Assisted by Multiprocessing for X‑ray Imaging

In recent years, novel metal halide scintillators have shown great application potential due to their tunable emission wavelength, high X-ray absorption, and high luminescence efficiency. However, poor stability and complex device packaging remain key issues for metal halide scintillators, making it...

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Bibliographic Details
Published in:ACS applied materials & interfaces 2023-08, Vol.15 (32), p.38741-38749
Main Authors: Zhou, Wei, Zhu, Xiaodie, Yu, Jing, Mou, Dedan, Li, Hongxing, Kong, Lingyu, Lang, Tianchun, Peng, Lingling, Chen, Wenbo, Xu, Xuhui, Liu, Bitao
Format: Article
Language:English
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Summary:In recent years, novel metal halide scintillators have shown great application potential due to their tunable emission wavelength, high X-ray absorption, and high luminescence efficiency. However, poor stability and complex device packaging remain key issues for metal halide scintillators, making it difficult to achieve high-resolution and flexible X-ray imaging applications. To address the above issues, a multiprocessing strategy was introduced to prepare Cs3Cu2I5@PMMA scintillator films for long-term stable application, mainly undergo different annealing treatments to make Cs3Cu2I5 crystals to accurately nucleate and then grow in-situ in the PMMA matrix. Then, a series of characterization results illustrate that the prepared Cs3Cu2I5@PMMA scintillator films have high crystallinity, uniform size, excellent flexibility, high stable photoluminescence (PL) and radioluminescence (RL) performance, and high-resolution X-ray imaging capability. Most importantly, Cs3Cu2I5@PMMA scintillator films can not only provide clear and accurate imaging recognition of objects with different complex structures but also maintain stable X-ray imaging quality within 60 days and can achieve flexible X-ray imaging. Therefore, we have provided an effective strategy for producing high-quality scintillator films to meet the multidimensional needs of a new generation of scintillators.
ISSN:1944-8244
1944-8252
DOI:10.1021/acsami.3c05856