闪烁体
卤化物
钙钛矿(结构)
闪烁
材料科学
发光
激发态
热释光
光电子学
吸收(声学)
猝灭(荧光)
激子
光致发光
产量(工程)
热的
结合能
铅(地质)
金属
分析化学(期刊)
荧光
作者
M. D. Birowosuto,D. Cortecchia,W. Drozdowski,K. Brylew,W. Lachmanski,A. Bruno,C. Soci
摘要
Abstract Current technologies for X-ray detection rely on scintillation from expensive inorganic crystals grown at high-temperature, which so far has hindered the development of large-area scintillator arrays. Thanks to the presence of heavy atoms, solution-grown hybrid lead halide perovskite single crystals exhibit short X-ray absorption length and excellent detection efficiency. Here we compare X-ray scintillator characteristics of three-dimensional (3D) MAPbI 3 and MAPbBr 3 and two-dimensional (2D) (EDBE)PbCl 4 hybrid perovskite crystals. X-ray excited thermoluminescence measurements indicate the absence of deep traps and a very small density of shallow trap states, which lessens after-glow effects. All perovskite single crystals exhibit high X-ray excited luminescence yields of >120,000 photons/MeV at low temperature. Although thermal quenching is significant at room temperature, the large exciton binding energy of 2D (EDBE)PbCl 4 significantly reduces thermal effects compared to 3D perovskites, and moderate light yield of 9,000 photons/MeV can be achieved even at room temperature. This highlights the potential of 2D metal halide perovskites for large-area and low-cost scintillator devices for medical, security and scientific applications.
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