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铕掺杂钆酸锶氧化物荧光粉的热释光特性及动力学分析

Thermoluminescence characteristics and kinetic analyses of europium doped strontium gadolinium oxide phosphor.

作者信息

Sarikci S, Topaksu M, Madkhali O, Can N

机构信息

Cukurova University, Arts-Sciences Faculty, Physics Department, 01330, Adana, Turkey.

Department of Physics, College of Science, Jazan University, P.O. Box. 114, Jazan, 45142, Saudi Arabia.

出版信息

Appl Radiat Isot. 2023 Jan;191:110549. doi: 10.1016/j.apradiso.2022.110549. Epub 2022 Nov 1.

DOI:10.1016/j.apradiso.2022.110549
PMID:36343580
Abstract

In this work, SrGdO phosphors incorporated with Eu at various dopant concentrations are synthesized via solid state reaction method. An X-ray diffraction (XRD) and thermoluminescence (TL) technique were used to examine the structural and thermoluminescent properties of as-prepared phosphors. Orthorhombic phase formation of Eu doped samples was confirmed by XRD. The influence of impurity concentration and heating rates on the glow curves was also investigated. Anomalous heating rate pattern was observed in the sample with Eu additive. A model of semi-localized transition was used to explain this behaviour. The TL glow curves of beta irradiated SrGdO:Eu (0.25 mass %) reveal three well-resolved peaks at 105, 189, and 245 °C. Various heating rates, T-T, initial rise, and computerized glow curve deconvolution techniques were employed to detect the overlapping peak numbers and establish the kinetic parameters of SrGdO:Eu (0.25 mass %). When the trap numbers and comparable energy values are considered, the findings of the approaches are very similar. For the dose ranges between 0.1 and 8 Gy, SrGdO:Eu (0.25 mass %) samples exhibited linear behaviour, and high reproducibility, indicating their applicability for TL dosimetry applications.

摘要

在本工作中,通过固态反应法合成了不同掺杂浓度的Eu掺杂的SrGdO荧光粉。采用X射线衍射(XRD)和热释光(TL)技术研究了所制备荧光粉的结构和热释光性能。XRD证实了Eu掺杂样品的正交相形成。还研究了杂质浓度和加热速率对发光曲线的影响。在添加Eu的样品中观察到异常加热速率模式。使用半局域跃迁模型来解释这种行为。β辐照的SrGdO:Eu(0.25质量%)的TL发光曲线在105、189和245℃处显示出三个分辨率良好的峰。采用各种加热速率、T-T、初始上升和计算机化发光曲线去卷积技术来检测重叠峰的数量,并确定SrGdO:Eu(0.25质量%)的动力学参数。当考虑陷阱数量和可比能量值时,这些方法的结果非常相似。对于0.1至8 Gy的剂量范围,SrGdO:Eu(0.25质量%)样品表现出线性行为和高重现性,表明它们适用于TL剂量学应用。

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