放射发光
闪烁体
闪烁
产量(工程)
材料科学
钙钛矿(结构)
发光
亮度
超短脉冲
光学
光电子学
化学
物理
结晶学
探测器
激光器
冶金
作者
Somnath Mahato,Michał Makowski,Shaona Bose,Dominik Kowal,Md Abdul Kuddus Sheikh,Philipp Braeuninger‐Weimer,Marcin E. Witkowski,S. K. Ray,Winicjusz Drozdowski,Muhammad Danang Birowosuto
标识
DOI:10.1021/acs.jpclett.4c00379
摘要
The remarkable brightness and rapid scintillation observed in perovskite single crystals (SCs) become even more striking when they are operated at cryogenic temperatures. In this study, we present advancements in enhancing the scintillation properties of methylammonium lead bromide (MAPbBr3) SCs by optimizing the synthesis process. We successfully synthesized millimeter-sized MAPbBr3 SCs with bright green luminescence under UV light. However, both MAPbBr3 (Control-1M and THF-0.4M) SCs display notable radioluminescence exclusively at low temperatures due to their phase transitions. Notably, the THF-0.4M SCs exhibit a remarkable improvement in radioluminescence light yield, surpassing Control-1M SCs more than 2-fold. Further, THF-0.4M SCs demonstrate an ultrafast decay component of 0.52 ns (82.2%) and a slower component of 1.80 ns (17.8%), contributing to a rapid scintillation response at low temperatures. Therefore, the amalgamation of ultrafast decay components and improved radioluminescence light yield equips THF-0.4M SCs to emerge as a top choice for perovskite scintillators for X-ray timing applications.
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