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EPR studies of Gd3+ ions in lithiumtetra boro-tellurite and lithiumlead tetra boro-tellurite glasses

机译:锂四硼锂铁矿和锂铅四硼锂铁矿玻璃中Gd3 +离子的EPR研究

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摘要

Glass systems of composition 85 $Li_2B_4O_7+(15-x) TeO_2 + x Gd_2O_3$ (x = 0, 1, 2, 3, 4 and 5 mol%) and 80 $Li_2B_4O_7+10 PbO+8 TeO_2+2 Gd_2O_3$ have been studied by using electron paramagnetic resonance (EPR). The EPR spectra indicate $Gd^3^+$ ions located at three types of sites randomly distributed in the host glass. The spectra exhibits three broad EPR signals at g pprox 2:0, g pprox 2:8 and g pprox 5:4 are attributed to Gd3+ ions located at sites with weak, intermediate and strong cubic symmetry fields respectively. In principle these sites may be of network forming and network modifying type. Ionic radius considerations suggest that gadolinium ions cannot substitute the much smaller boron ions and thus only the network modifier site is acceptable. The effect of gadolinium content as well as temperature 123-433K on resonance signals have been investigated. The number of spins (N) participating in resonance and its paramagnetic susceptibility (chi) for g pprox 5:4 resonance line have been calculated as a function of Gd content and temperature. It is observed that N and chi increase with x. A linear relationship was established between log N and 1=T and the activation energy was calculated fromthe graph. From the graph the Curie constant (C) and Curie temperature (heta) have been evaluated. The temperature dependence of inverse magnetic susceptibility (1/ chi) displays Curie-Weiss type of magnetic behaviour. The theoretical values of optical basicity $(A_t_h)$ of the glasses have also been evaluated.
机译:组成为85 $ Li_2B_4O_7 +(15-x)TeO_2 + x Gd_2O_3 $(x = 0、1、2、3、4和5 mol%)和80 $ Li_2B_4O_7 + 10 PbO + 8 TeO_2 + 2 Gd_2O_3 $的玻璃系统通过使用电子顺磁共振(EPR)研究。 EPR光谱表明,位于随机分布在主体玻璃中的三种类型的位点处的$ Gd ^ 3 ^ + $离子。光谱在g approx 2:0,g approx 2:8和g approx 5:4处显示三个宽的EPR信号,分别归因于分别位于具有弱,中和强立方对称场的位置的Gd3 +离子。原则上,这些站点可以是网络形成和网络修改类型的。离子半径的考虑表明suggest离子不能替代小得多的硼离子,因此只有网络修饰位点是可以接受的。研究了of含量以及123-433K温度对共振信号的影响。已经计算出参与共振的自旋数(N)及其对g 大约5:4共振线的顺磁化率( chi)作为Gd含量和温度的函数。观察到N和 chi随x增加。在log N和1 = T之间建立线性关系,并从该图计算活化能。从图中可以评估居里常数(C)和居里温度( theta)。磁化率的逆温度依赖性(1 / chi)显示居里-魏斯类型的磁行为。还已经评估了眼镜的光学碱度$(A_t_h)$的理论值。

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