材料科学
闪烁
透明陶瓷
陶瓷
烧结
发光
分析化学(期刊)
光致发光
兴奋剂
透射率
猝灭(荧光)
矿物学
无压烧结
光学
光电子学
复合材料
检出限
微观结构
晶粒生长
热处理
离子
热的
氧气
热膨胀
作者
Yan Liu,Xianpeng Qin,Song Hu,Guohong Zhou
摘要
ABSTRACT Highly transparent Lu 2 O 3 :Eu scintillation ceramics were fabricated by pressureless sintering with Ta 2 O 5 as a novel sintering additive. The optical transmittance, microstructural evolution, and photoluminescence and scintillation properties of the samples were investigated. Ta 2 O 5 doping generates interstitial oxygen ions, which, on one hand, effectively suppress grain growth and promote densification, leading to high optical transparency. The maximum linear transmittance reaches 78.7% and 80.3% at 611 and 1100 nm (1 mm in thickness), respectively, when the sample doped with 0.3 at% Ta 2 O 5 sintered at 1840°C. On the other hand, these defects exert a detrimental effect on the luminescent and scintillation properties of the samples. Both intensities exhibit a non‐monotonic dependence on Ta 2 O 5 concentration, yet all samples display characteristic red emission of Eu 3+ centered at ∼611 nm. Notably, the XEL intensity of all ceramics surpasses that of BGO single crystals, demonstrating excellent scintillation performance. The samples also exhibit superior dose‐rate linearity ( R 2 = 0.9548) with a low detection limit of 0.113 mGy·s −1 . Furthermore, negative thermal quenching behavior is observed, which is ascribed to the thermally stimulated release of carriers from defect states.
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