材料科学
兴奋剂
闪烁体
退火(玻璃)
发光
成核
纳米技术
结晶学
光电子学
分析化学(期刊)
光学
化学
复合材料
物理
有机化学
探测器
色谱法
作者
Jingkun Chen,Xue Yang,Yucheng Li,Minghui Xu,Xue‐Chun Yang,Jian Tang,Pu Zheng,Jie Yan,Jing‐Tai Zhao,Qianli Li
标识
DOI:10.1021/acs.cgd.4c00903
摘要
The development of high-speed imaging technology requires ultrafast scintillators. ZnO is an excellent scintillator whose near-band-edge (NBE) radiation attenuation can reach subnanosecond levels. Homogeneous and unique double-layered ZnO:Sc microcrystals (1% doping) were prepared by adding polyvinylpyrrolidone during a hydrothermal reaction. The growth process of double-layer ZnO:Sc microcrystals and the effects of Sc doping concentration on the morphology of ZnO:Sc microcrystals were studied. ZnO:Sc tended to nucleate into twins in weakly basic hexamethylenetetramine. The c-axis growth of ZnO was inhibited by Sc doping, and the growth pyramid of ZnO:Sc was in accordance with the Burton–Cabrera–Frank growth model in the (002) plane, according to the spiral dislocation. Sheet ZnO:Sc microcrystals were obtained under high-concentration Sc doping. After hydrogen annealing, the NBE intensity of 0.5%-doped ZnO:Sc microcrystals was higher than that of ZnO, mainly owing to inhibition of defect luminescence and sheet morphology, which reduced the self-absorption of ZnO:Sc. The decay time of the ZnO:Sc microcrystals after hydrogen annealing under ultraviolet excitation was less than 1 ns. Combining the annealed microcrystals with polydimethylsiloxane to form a flexible composite film enables the scintillation screen to be used for ultrafast X-ray detection with a spatial resolution of up to 16 lp/mm.
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