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Updated: Jul 12, 2026

Electrophoretic Crystallization of Ultrathin High-performance Metal-organic Framework Membranes
Published on: August 16, 2018
One stone, two birds: robust and self-absorption free flexible perovskite scintillators by metal-organic framework
Jie Zhou1,2, Zhouyuanhang Wang1,2, Zhongren Shi2
1School of Physics and Optoelectronic Engineering, Key Laboratory of Opto-Electronic Information Acquisition and Manipulation of Ministry of Education, Anhui University, Hefei, 230601, Anhui, P. R. China. zhijiahu@ahu.edu.cn.
Abstract:
In recent years, metal halide perovskite scintillators have demonstrated significant potential for X-ray detection applications. However, these scintillators frequently encounter challenges such as poor stability, insufficient radiation hardness, and substantial self-absorption, which detrimentally affect their scintillation efficiency and practicality. This study explores the encapsulation of perovskite (CsPbBr3) nanocrystals and dyes simultaneously within mesoporous zinc-based metal-organic frameworks (MOF-5) to boost perovskite scintillation performance. Our findings indicate that the energy transfer from the perovskite to the dye can effectively minimize the self-absorption of the perovskite, significantly increasing the light yield-3.4 times that of pristine CsPbBr3 nanocrystals, and improve the detection sensitivity by 40%. Furthermore, such encapsulation markedly improves perovskite stability and enhances thermal resistance by 78.9% and radiation hardness by 26.5%. These advances in stability, thermal resilience, and radiation durability, combined with a lower detection limit, allow perovskites to be used in more scintillation scenarios and endure more rigorous operational conditions.
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