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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >High-Sensitivity and Wide-Linear-Range Thermoluminescence Dosimeter LiMgPO4:Tm,Tb,B for Detecting High-Dose Radiation
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High-Sensitivity and Wide-Linear-Range Thermoluminescence Dosimeter LiMgPO4:Tm,Tb,B for Detecting High-Dose Radiation

机译:高灵敏度和宽线性范围热致发光剂量计LiMGPO4:TM,TB,B用于检测高剂量辐射

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摘要

High-sensitivity and wide-linear-range thermoluminescence dosimeter (TLD) is of importance for detecting high-dose radiation in industry, medicine, and agriculture as well as materials and food processing. In this work, we synthesize a series of LiMgPO4 doped with Tm3+, Tb3+, and B3+ via a high-temperature solid-state reaction technique. To observe the effect of dopants, we first investigate the structure by Rietveld refinement of high-quality X-ray diffraction (XRD) data and then study the thermoluminescence (TL) properties of samples radiated by beta-rays in detail. The TL signal of LiMgPO4:Tm,Tb,B is originated from Tm3+ 4f-4f transitions. The kinetic parameters are obtained through fitting the TL glow curve based on the general-order kinetics model, revealing that the dominant TL peak at similar to 323 degrees C is related to similar to 1.49 eV trap. Through constructing the vacuum-referred binding energy (VRBE) scheme, we uncover that this deep trap mainly originates from the Tb-3(+) dopant acted as the captured center of free hole. After codoping 0.6% B-3(+), the sensitivity of sample as TLD increases similar to 170%. According to the radiation dose-dependent TL intensities, the sensitivity of LiMgPO4:Tm,Tb,B is about 200% larger than that of the commercial LiF:Mg,Cu,P at 0.08 Gy, and more sensitive at higher dose. Moreover, the studied sample has wider linear range (up to 10 000 Gy) toward high-dose side, good reproducibility (RSD similar to 4.6%), and weak fading (similar to 8% after 34 days), and therefore has potential application as TLD for monitoring high-dose radiation.
机译:高灵敏度和宽线性范围热致发光剂量表(TLD)对于检测工业,医药和农业以及材料和食品加工的高剂量辐射是重要的。在这项工作中,我们通过高温固态反应技术合成掺杂有TM3 +,TB3 +和B3 +的一系列LimGPO4。为了观察掺杂剂的效果,首先通过RIETVELD改进高质量的X射线衍射(XRD)数据来研究结构,然后研究通过β射线辐射的样品的热致发光(TL)性质。 LiMGPO4:TM,TB,B的TL信号源自TM3 + 4F-4F过渡。通过基于一般阶动力学模型拟合TL发光曲线来获得动力学参数,揭示了类似于323摄氏度的显性TL峰与类似于1.49eV陷阱的峰值。通过构建真空引用的绑定能量(VRBE)方案,我们发现这种深阱主要来自TB-3(+)掺杂剂作用为捕获的自由孔中心。编码0.6%B-3(+)后,样品的敏感性与TLD一样类似于170%。根据辐射剂量依赖性TL强度,LiMGPO4:Tm,Tb,B的敏感性大于商业LIF的约200%:Mg,Cu,P为0.08 Gy,更敏感的较高剂量。此外,研究的样品具有更宽的线性范围(高达10 000倍),朝向高剂量侧,良好的再现性(RSD类似于4.6%),弱衰落(类似于34天后的8%),因​​此具有潜在的应用作为监测高剂量辐射的TLD。

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