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TiO₂/MgO 共掺杂的 Li₂CO₃-K₂CO₃-H₃BO₃ 玻璃的发光特性

Luminescence characteristics of Li₂CO₃-K₂CO₃-H₃BO₃ glasses co-doped with TiO₂/MgO.

作者信息

Alajerami Yasser Saleh Mustafa, Hashim Suhairul, Ghoshal Sib Krishna, Ramli Ahmad Termizi, Saleh Muneer Aziz, Ibrahim Zuhairi, Kadni Taiman, Bradley David Andrew

机构信息

Department of Physics, Universiti Teknologi Malaysia, 81310 Skudai, Johor, Malaysia; Department of Medical Radiography, Al-Azhar University, Gaza Strip, Palestine.

出版信息

Appl Radiat Isot. 2013 Dec;82:12-9. doi: 10.1016/j.apradiso.2013.07.005. Epub 2013 Jul 9.

Abstract

Understanding the influence of co-dopants in the luminescence enhancement of carbonate glasses is the key issue in dosimetry. A series of borate glasses modified by lithium and potassium carbonate were synthesized by the melt-quenching method. The glass mixture activated with various concentrations of TiO2 and MgO was subjected to various doses of gamma-rays ((60)Co). The amorphous nature of the samples was confirmed by x-ray diffraction (XRD) spectra. The simple glowing curve of the glass doped with TiO2 features a peak at 230°C, whose intensity is maximal at 0.5 mol% of the dopant. The intensity of the glowing curve increases with the concentration of MgO added as a co-dopant up to 0.25 mol%, where it is two times higher than for the material without MgO thermoluminescence properties, including dose response, reproducibility, and fading were studied. The effective atomic number of the material was also determined. Kinetic parameters, such as kinetics order, activation energy, and frequency factor are estimated. The photoluminescence spectra of the titanium-doped glass consist of a prominent peaks at 480 nm when laser excitation at 650 nm is used. A three-fold photoluminescence enhancement and a blue shift of the peak were observed when 0.1% MgO was introduced. In addition, various physical parameters, such as ion concentration, polaron radius and internuclear distances were calculated. The mechanism for the thermoluminescence and photoluminescence enhancements are discussed.

摘要

了解共掺杂剂对碳酸盐玻璃发光增强的影响是剂量测定中的关键问题。采用熔融淬火法合成了一系列用碳酸锂和碳酸钾改性的硼酸盐玻璃。用不同浓度的TiO₂和MgO激活的玻璃混合物接受不同剂量的γ射线(⁶⁰Co)照射。通过X射线衍射(XRD)光谱证实了样品的非晶态性质。掺杂TiO₂的玻璃的简单发光曲线在230°C处有一个峰值,当掺杂剂浓度为0.5 mol%时强度最大。作为共掺杂剂添加的MgO浓度增加到0.25 mol%时,发光曲线的强度增加,此时比没有MgO的材料高出两倍。研究了包括剂量响应、再现性和褪色在内的热释光性质。还测定了材料的有效原子序数。估算了动力学参数,如动力学级数、活化能和频率因子。当使用650 nm激光激发时,掺钛玻璃的光致发光光谱在480 nm处有一个突出的峰值。当引入0.1%的MgO时,观察到光致发光增强了三倍且峰值发生蓝移。此外,还计算了各种物理参数,如离子浓度、极化子半径和核间距。讨论了热释光和光致发光增强的机制。

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