Luo Ansheng, Zhang Jingru, Xiao Dongjie, Xie Gaozhan, Xu Xinqi, Zhao Qingxian, Sun Chengxi, Li Yanzhang, Zhang Zehua, Li Ping, Luo Shouhua, Xie Xiaoji, Peng Qiming, Li Huanhuan, Chen Runfeng, Chen Qiushui, Tao Ye, Huang Wei
State Key Laboratory of Organic Electronics and Information Displays & Institute of Advanced Materials (IAM), Nanjing University of Posts & Telecommunications, Nanjing, China.
MOE Key Laboratory for Analytical Science of Food Safety and Biology, State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou University, Fuzhou, China.
Nat Commun. 2024 Sep 18;15(1):8181. doi: 10.1038/s41467-024-51482-8.
The development of high-performance metal-free organic X-ray scintillators (OXSTs), characterized by a synergistic combination of robust X-ray absorption, efficient exciton utilization, and short luminescence lifetimes, poses a considerable challenge. Here we present an effective strategy for achieving augmented X-ray scintillation through the utilization of halogenated open-shell organic radical scintillators. Our experimental results demonstrate that the synthesized scintillators exhibit strong X-ray absorption derived from halogen atoms, display efficacious X-ray stability, and theoretically achieve 100% exciton utilization efficiency with a short lifetime (∼18 ns) due to spin-allowed doublet transitions. The superior X-ray scintillation performance exhibited by these organic radicals is not only exploitable in X-ray radiography for contrast imaging of various objects but also applicable in a medical high-resolution micro-computer-tomography system for the clear visualization of fibrous veins within a bamboo stick. Our study substantiates the promise of organic radicals as prospective candidates for OXSTs, offering valuable insights and a roadmap for the development of advanced organic radical scintillators geared towards achieving high-quality X-ray radiography.
开发高性能无金属有机X射线闪烁体(OXST)面临着巨大挑战,其特点是强大的X射线吸收、高效的激子利用和短发光寿命的协同组合。在此,我们提出一种通过利用卤化开壳有机自由基闪烁体来增强X射线闪烁的有效策略。我们的实验结果表明,合成的闪烁体表现出源自卤素原子的强X射线吸收,具有有效的X射线稳定性,并且由于自旋允许的双重态跃迁,理论上在短寿命(约18纳秒)下实现了100%的激子利用效率。这些有机自由基表现出的卓越X射线闪烁性能不仅可用于X射线成像以对各种物体进行对比成像,还适用于医用高分辨率微型计算机断层扫描系统,以清晰显示竹棒内的纤维状脉络。我们的研究证实了有机自由基作为OXST潜在候选材料的前景,为开发旨在实现高质量X射线成像的先进有机自由基闪烁体提供了有价值的见解和路线图。