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Optimization of thermoluminescence response of copper doped zinc lithium borate glass co-doped with Na2O

机译:Na2O共掺杂铜掺杂硼酸锌锂硼玻璃热致发光响应的优化

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摘要

Establishing the basic procedures that will influence the enhancement of the TL yield of a phosphor is paramount in the issue of dosimetry. Melt quenching method was adopted in synthesizing lithium borate glass modified with ZnO, doped with CuO and codoped with Na2O. The structural and optical properties of zinc lithium borate and some TL properties of copper doped zinc lithium borate were reported in our previous works. The amorphous nature of the prepared glasses was confirmed by x-ray diffraction analysis (XRD). Physical properties of the glass were obtained via Archimedes principle. The copper doped zinc lithium borate was co-doped with different concentration of Na2O (0.025 mol % to 0.1 mol %). The glasses were irradiated with 4 Gy dose of gamma rays using 60Co gamma cell. The highest TL response was recorded against 0.05 mol% concentration of Na2O. The best settings for TLD reading of the proposed TLD were determined. The optimal annealing temperature and time for this composition was found to be 300 oC and 50 min respectively. The best heating rate at which the new TLD can be readout was 3 oC S-1.
机译:建立将影响磷光体TL产量提高的基本程序在剂量学问题中至关重要。采用熔融淬火法合成了ZnO,CuO和Na2O共掺杂的硼酸锂玻璃。我们以前的工作中已经报道了硼酸锂锌的结构和光学性质以及掺杂铜的硼酸锌锂的一些TL特性。通过X射线衍射分析(XRD)确认了所制备的玻璃的无定形性质。通过阿基米德原理获得玻璃的物理性质。将铜掺杂的硼酸锌锂与不同浓度的Na 2 O(0.025mol%至0.1mol%)共掺杂。使用60Co伽玛射线池向玻璃杯照射4 Gy剂量的伽玛射线。记录到最高的TL反应,相对于0.05 mol%的Na2O浓度。确定了建议的TLD的TLD读取的最佳设置。发现该组合物的最佳退火温度和时间分别为300 oC和50分钟。可以读取新TLD的最佳加热速率是3 oC S-1。

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