闪烁体
放射发光
闪烁
材料科学
光致发光
光电子学
发光
光子
产量(工程)
钙钛矿(结构)
荧光粉
量子产额
兴奋剂
卤化物
光学
粒子探测器
计数效率
双β衰变
余辉
光子计数
辐射
量子效率
作者
Peiyang Li,Wei Xiong,Laishun Qin,Ji‐Guang Li,Qi Zhu
标识
DOI:10.1002/lpor.202503264
摘要
ABSTRACT High‐performance scintillators play a core role in the development of advanced medical imaging technologies, particularly in complex detection scenarios requiring both high sensitivity and high temporal resolution. However, developing a scintillator that simultaneously combines outstanding radioluminescence (RL) efficiency with fast decay characteristics remains a formidable challenge. Here, Ce 3+ ‐doped Cs 2 NaGdCl 6 (CNGC) double perovskite is designed to regulate the luminescence efficiency feature of the scintillator by introducing Br − to suppress the formation of Cl vacancy defects. Notably, the doping of Br − significantly reduces the defect density in CNGC:Ce 3+ , decreases non‐radiative recombination, and achieves a high photoluminescence quantum yield (PLQY) of 90.2%. Based on its outstanding scintillation performance, including a high light yield (LY) of 47637 photons MeV −1 , a short RL decay time of 153 ns, and a low detection limit of 74.95 nGy s −1 , the CNGC:15%Ce 3+ ,3%Br − scintillator film can capture clear high‐speed X‐ray imaging of the flowing contrast agents in simulated angiography. This work develops a novel scintillator material that not only holds immense potential as a candidate material for diverse ultrafast radiation detection applications, but also establishes a foundation for designing scintillators that simultaneously exhibit high LY and rapid RL decay characteristics.
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