Low temperature scintillation performance of a Br-doped CH3NH3PbCl3single-crystalline perovskite

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Abstract

Time response and light yield are two of the most important features of a scintillation detector, and are mostly determined by the luminescence properties of the scintillator. Here we have investigated the radioluminescence (RL) characteristics of a single-crystalline hybrid lead halide perovskite at both room temperature and low temperature. A dual-channel single photon correlation (DCSPC) system with a vacuum chamber is employed for the measurement. A rise time faster than 100 ps and several times enhancement of the crystal scintillation performances at low temperature have been observed. These behaviors demonstrated that bulk solution-grown single crystals of hybrid lead halide perovskites (MAPbCl3 and Br-doped MAPbBr0.08Cl2.92, where MA = CH3NH3) can serve as stable scintillating materials for pulsed gamma detectors. In addition, this work provides a pathway for perovskite application and also attracts attention to investigating low-temperature scintillators.

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APA

Liu, J., Hei, D., Xu, Q., Tan, X., Ruan, J., Ouyang, X., … Sun, B. (2021). Low temperature scintillation performance of a Br-doped CH3NH3PbCl3single-crystalline perovskite. RSC Advances, 11(4), 2020–2024. https://doi.org/10.1039/d0ra06860h

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