Organic–inorganic hybrid perovskite scintillators for mixed field radiation detection

闪烁体 中子探测 中子 材料科学 中子俘获 光子 探测器 物理 核物理学 光学
作者
Mengling Xia,Guangda Niu,Linyue Liu,Runlong Gao,Tong Jin,Pengying Wan,Weicheng Pan,Xianpeng Zhang,Zuoxiang Xie,Sam Teale,Zenghua Cai,Jiajun Luo,Shan Zhao,Haodi Wu,Shiyou Chen,Zhiping Zheng,Qingguo Xie,Xiaoping Ouyang,Edward H. Sargent,Jiang Tang
出处
期刊:InfoMat [Wiley]
卷期号:4 (9) 被引量:30
标识
DOI:10.1002/inf2.12325
摘要

Abstract Sensitive and fast detection of neutrons and gamma rays is vital for homeland security, high‐energy physics, and proton therapy. Fast‐neutron detectors rely on light organic scintillators, and γ‐ray detectors use heavy inorganic scintillators and semiconductors. Efficient mixed‐field detection using a single material is highly challenging due to their contradictory requirements. Here we report hybrid perovskites (C 8 H 12 N) 2 Pb(Br 1− x Cl x ) 4 that combine light organic cations and heavy inorganic skeletons at a molecular level to achieve unprecedented performance for mixed‐field radiation detection. High neutron absorption due to a high density of hydrogen, strong radiative recombination within the highly confined [PbX 6 ] 4− layer, and sub‐nanometer distance between absorption sites and radiative centers, enable a light yield of 41 000 photons/MeV, detection pulse width of 2.97 ns and extraordinary linearity response toward both fast neutrons and γ‐rays, outperforming commonly used fast‐neutron scintillators. Neutron energy spectrum, time‐of‐flight based fast‐neutron/γ‐ray discrimination and neutron yield monitoring were all successfully achieved using (C 8 H 12 N) 2 Pb(Br 0.95 Cl 0.05 ) 4 detectors. We further demonstrate the monitoring of reaction kinetics and total power of a nuclear fusion reaction. We envision that molecular hybridized scintillators open a new avenue for mixed‐field radiation detection and imaging. image
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