放射发光
闪烁体
材料科学
卤化物
溶血酶-
微晶
Crystal(编程语言)
配体(生物化学)
锰
分辨率(逻辑)
单晶
X射线
结晶学
光学
化学
探测器
无机化学
物理
受体
程序设计语言
冶金
计算机科学
人工智能
生物化学
作者
Dianxing Ju,Siyuan Zhang,Ming Zhou,Guoyi Kong,Yiheng Li,Fan Yang,Wupei Dong,Xizheng Wang,Huifang Li
标识
DOI:10.1002/lpor.202501146
摘要
Abstract Organic manganese halides have attracted significant attention as scintillators for X‐ray imaging. Efforts are primarily focused on Mn‐Mn distance to modulate their radioluminescence, while the interaction between organic molecules and inorganic frameworks has been overlooked. Moreover, owing to the considerable growth challenges of large area crystal films, their scintillator screens are predominantly polycrystalline films or transparent glass, the high light scattering leads to a low resolution of X‐ray imaging. Herein, by integrating the mixed organic cations strategy with triple‐synergy crystal growth strategy, the interaction between organic molecules and inorganic frameworks is enhanced and an inch‐sized TMA 1 TEA 1 MnBr 4 single crystal film is successfully grown, achieving dual enhancements in both radioluminescence and X‐ray imaging resolution. As anticipated, TMA 1 TEA 1 MnBr 4 crystal exhibits the highest radioluminescence. Mechanistic studies reveal that the mixed ligand strategy effectively strengthens the target interaction, leading to enhanced charge distribution on Mn ion. Owing to this, TMA 1 TEA 1 MnBr 4 single crystal achieves the relative light output of 155% LYSO under X‐rays, ≈2.7 and 3.1 times higher than those of TEA 2 MnBr 4 (58% LYSO) and TMA 2 MnBr 4 (50% LYSO). Exciting, TMA 1 TEA 1 MnBr 4 single crystal film demonstrates an exceptional spatial resolution of 30.70 lp mm −1 , surpassing most commercial and polycrystalline film scintillators, confirming its immense potential for high‐resolution X‐ray imaging.
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