Photo‐ and Radioluminescence Properties of (Gd3+/Ce3+) Coupled Ions Activated Sodium‐Aluminum‐Oxyfluoride‐Phosphate Glasses for X‐ray Detecting Material

放射发光 放射化学 离子 化学 磷酸盐 磷酸钠 镧系元素 核化学 锕系元素 X射线 材料科学 无机化学 核物理学 物理 闪烁体 有机化学 光学 探测器
作者
P. Meejitpaisan,Ramachari Doddoji,N. Jarucha,C.S. Sarumaha,Prom Kantuptim,Yanagida Takayuki,J. Kaewkhao
出处
期刊:Physica Status Solidi A-applications and Materials Science [Wiley]
标识
DOI:10.1002/pssa.202400216
摘要

Oxyfluoride‐based sodium‐aluminum‐phosphate glasses with a fixed 7 mol% content of Gd 2 O 3 and various amounts of CeF 3 were fabricated by the melt quenching process. The fabricated glasses (NAPGCe) were studied by physical, optical, scintillation, and light yield properties. In NAPGCe glasses, intense emission peaks were observed at 312 nm ( 6 P 7/2 → 8 S 7/2 ) for Gd 3+ and 336 nm (5d → 4f) for Ce 3+ ions in both photoluminescence (275 and 294 nm) and radioluminescence (X‐ray) spectra. Upon excitation with 275 nm ultraviolet radiation, a decrease in Gd 3+ emission and an increase in Ce 3+ emission intensity lead to efficient energy transfer (ET) from Gd 3+ to Ce 3+ ion in NAPGCe glasses. The bi‐exponential function was applied to fit the non‐exponential decay curves of NAPGCe glasses and then calculated their lifetimes in the order of fast (18.25–16.94 ns) and slow (72.99–67.74 ns) decay times. An overall integrated scintillation efficiency of about 67% was estimated for NAPGCe0.10 glass compared to bismuth germanate oxide (BGO:Bi 4 Ge 3 O 12 ) crystal. Under 241 Am α‐ray (5.5 MeV) source, the light yield of the NAPGCe1.00 glass was obtained by comparing it with a commercial Li‐glass scintillator (GS20), and it was found to be 26 photons MeV −1 .
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