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基质对Tb3+单掺荧光玻璃发光性质的影响
引用本文:李亮,雷小华,任林娇,冯永安.基质对Tb3+单掺荧光玻璃发光性质的影响[J].发光学报,2014,35(4):420-424.
作者姓名:李亮  雷小华  任林娇  冯永安
作者单位:1. 光电技术及系统教育部重点实验室 重庆大学光电工程学院, 重庆 400044; 2. 二炮装备部驻重庆地区军事代表局, 重庆 400039
基金项目:国家自然科学基金(61007030); 重庆市自然科学基金(cstc2013jcyjA1060)资助项目
摘    要:采用高温熔融法制备了Tb3+单掺硼酸盐、硅酸盐和磷酸盐荧光玻璃和相应的玻璃基质。根据紫外-可见透射光谱计算了Tb3+在不同基质中从7F65D35D4能级的实验振子强度,解释了不同基质中Tb3+发射光谱的变化原因。结果表明:因为对称性差,在磷酸盐玻璃基质中,Tb3+在542 nm和585 nm处的发射峰有劈裂现象。在硼酸盐和硅酸盐基质中,Tb3+5D3能级上的粒子通过交叉弛豫过程被倒空并转移到5D4能级,故5D3能级发光(413 nm和436 nm)不明显;在磷酸盐基质中,Tb3+5D3能级上的粒子数较少,没有交叉弛豫产生,故5D3能级发光最强。在3种基质中,Tb3+5D4能级发射的特征峰489,542,585,620 nm的强度顺序是硼酸盐>硅酸盐>磷酸盐,与Tb3+在不同基质中从7F65D4能级的实验振子强度顺序一致。

关 键 词:基质  Tb3+  荧光玻璃  振子强度
收稿时间:2013/11/4

Effect of Glass Matrix on Luminescent Properties of Tb3+ Doped Luminescence Glass
LI Liang,LEI Xiao-hua,REN Lin-jiao,FENG Yong-an.Effect of Glass Matrix on Luminescent Properties of Tb3+ Doped Luminescence Glass[J].Chinese Journal of Luminescence,2014,35(4):420-424.
Authors:LI Liang  LEI Xiao-hua  REN Lin-jiao  FENG Yong-an
Institution:1. The Key Laboratory for Opto-electronic Technology & Systems of Ministry of Education, Department of Opto-electronic Engineering, Chongqing University, Chongqing 400044, China; 2. Equipment Department of The Second Artillery Military Representative Office in Chongqing Area, Chongqing 400039, China
Abstract:Tb3+ doped borate, silicate and phosphate glasses and glass matrixes were prepared by high temperature melting technology. According to the UV-Vis transmission spectra, the experiment oscillator strengths of Tb3+ from 7F6 to 5D3 and 5D4 were calculated, and the luminescent properties of Tb3+ in different glass matrixes were explained. The results show that the 542 nm and 585 nm emissions of Tb3+ doped in phosphate glass have split into two peaks because of the poor symmetry. In borate and silicate glasses, the particles in 5D3 energy level of Tb3+ have been emptied and moved to 5D3 energy level because of the cross relaxation, so the emissions from 5D3 energy level (413, 436 nm) are not obvious. In phosphate glass, 5D3 energy level of Tb3+ has much fewer particles and no cross relaxation, so the emission from 5D3 energy level is the strongest. The characteristic emission peaks of Tb3+ from 5D4 energy level are 489, 542, 585 and 620 nm. In different glass matrixes, the order of their intensities from largest to smallest is borate, silicate and phosphate glass, which is consistent with the order of experiment oscillator strengths from 7F6 to 5D4.
Keywords:glass matrix  Tb3+  luminescence glass  oscillator strength
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