闪烁
材料科学
烧结
陶瓷
余辉
分析化学(期刊)
发光
化学计量学
相(物质)
透明陶瓷
矿物学
冶金
光学
光电子学
化学
物理
物理化学
色谱法
探测器
天文
有机化学
伽马射线暴
作者
Danyang Zhu,Lexiang Wu,Alena Beitlerová,Romana Kučerková,Weerapong Chewpraditkul,M. Nikl,Jiang Li
标识
DOI:10.26599/jac.2023.9220797
摘要
(Gd,Y,Ce)3(YxGa1−x)2GaAl2O12 (GYGAG:Ce) scintillation ceramics with different Y excess, where x = 0.005−0.08, were fabricated by the solid-state reaction method. The effects of stoichiometry on the phase composition, optical quality, and microstructure of GYGAG:Ce ceramics were analyzed. GYGAG:Ce ceramics have a pure garnet phase and obtain good in-line transmittance when x < 0.04, while more Y excess leads to the creation of the secondary phase. The change of x value influences the sintering behavior of the GYGAG:Ce ceramics: The excess of Y works as the self-sintering aid and significantly reduces the sintering temperature of ceramics. When x = 0.01–0.04, the X-ray excited luminescence (XEL) spectra and light yields of GYGAG:Ce ceramics are similar. The fast scintillation decay time and afterglow intensity of GYGAG:Ce ceramics show a slight decrease with increasing x value. Finally, additional 50–500 ppm MgO and 100–500 ppm CaO were introduced to the GYGAG:Ce ceramic with x = 0.04, and both were found to significantly increase the fast scintillation component and reduce the afterglow intensity by two orders of magnitude to 0.01% after X-ray cut-off.
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