材料科学
卤化物
光致发光
闪烁体
化学
分析化学(期刊)
降水
聚二甲基硅氧烷
兴奋剂
吸收(声学)
量子产额
结晶学
闪烁
激子
光电子学
量子点
产量(工程)
光谱学
作者
Pengcheng Jiang,Huidong Tang,Xin Xiong,Wenting Wang,Jingdan Yan,Yao Luo,Yong Su,Siqi Zhu,Xinyi Wen,S XU,Hongxia Zhao,Wei Zhang,Zhi Wu
摘要
ABSTRACT Lead‐free all‐inorganic metal halides are promising scintillators due to their self‐trapped exciton (STE) luminescence, large Stokes shifts, and robust stability. However, achieving a balance among scalable synthesis, X‐ray absorption capability, high light yield (LY), and stability of all‐inorganic metal halide microcrystals (MCs) remains extremely challenging. Here we introduce Sb 3+ into a Cs 3 LuCl 6 host with a high effective atomic number and synthesize Sb 3+ ‐doped Cs 3 LuCl 6 MCs by room‐temperature precipitation. The incorporation of Sb 3+ generates localized [SbCl 6 ] 3− units that regulate self‐trapped exciton emission, yielding optimized Cs 3 LuCl 6 : 0.7%Sb 3+ MCs that exhibit broadband green emission, a large Stokes shift of 142 nm and a near‐unity photoluminescence quantum yield of 97.4%. The MCs also exhibit outstanding X‐ray absorption capability, a high LY of 26318 photons/MeV, a low detection limit of 437 nGy/s, and exceptional irradiation stability (retaining 115% of initial RL intensity after 1 h of cyclic irradiation). The fabricated flexible Cs 3 LuCl 6 : Sb 3+ MCs @ polydimethylsiloxane film further enables clear visualization of intricate internal structures with a spatial resolution of 10.8 lp/mm. These results demonstrate the potential of Sb 3+ ‐doped Cs 3 LuCl 6 as a highly efficient, stable, and lead‐free scintillator and establish a scalable, low‐temperature synthetic route toward advanced flexible X‐ray imaging systems.
科研通智能强力驱动
Strongly Powered by AbleSci AI