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Mixed alkali effect in borate glasses-EPR and optical absorption studies in xNa2O.(30-x)K2O-70B2O3 glasses doped with Mn2+

机译:硼酸盐玻璃的混合碱效应-EPR和xNa2O的光学吸收研究。(30-x)K2O-70B2O3掺杂Mn2 +的玻璃

摘要

The mixed alkali borate xNa2O–(30−x)K2O–70B2O3 (5≤x≤25) glasses doped with 1 mol% of manganese ions were investigated using EPR and optical absorption techniques as a function of alkali content to look for ‘mixed alkali effect’ (MAE) on the spectral properties of the glasses. The EPR spectra of all the investigated samples exhibit resonance signals which are characteristic of the Mn2+ ions. The resonance signal at gcong 2.02 exhibits a six line hyperfine structure. In addition to this, a prominent peak with gcong 4.64, with a shoulder around gcong 4.05 and 2.98, was also observed. From the observed EPR spectrum, the spin-Hamiltonian parameters g and A have been evaluated. It is interesting to note that some of the EPR parameters do show MAE. It is found that the ionic character increases with x and reaches a maximum around x=20 and thereafter it decreases showing the MAE. The number of spins participating in resonance (N) at gcong 2.02 decreases with x and reaches a minimum around x=20 and thereafter it increases showing the MAE. It is also observed that the zero-field splitting parameter (D) increases with x, reaches a maximum around x=15 and thereafter decreases showing the MAE. The optical absorption spectrum exhibits a broad band around ~20,000 cm−1 which has been assigned to the transition 6A1g(S)→4T1g(G). From ultraviolet absorption edges, the optical bandgap energies and Urbach energies were evaluated. It is interesting to note that the Urbach energies for these glasses decrease with x and reach a minimum around x=15. The optical band gaps obtained in the present work lie in the range 3.28–3.40 eV for both the direct and indirect transitions. The physical parameters of all the glasses were also evaluated with respect to the composition.
机译:使用EPR和光学吸收技术研究碱金属硼酸盐xNa2O–(30-x)K2O–70B2O3(5≤x≤25)掺杂的玻璃(5≤x≤25)与碱含量的关系,以寻找“混合碱” (MAE)对眼镜光谱特性的影响。所有研究样品的EPR光谱均显示出Mn2 +离子所特有的共振信号。 g cong 2.02处的共振信号表现出六线超精细结构。除此之外,还观察到g cong 4.64的突出峰,其肩峰位于g cong 4.05和2.98左右。从观察到的EPR光谱中,已经评估了自旋哈密顿参数g和A。有趣的是,一些EPR参数确实显示了MAE。发现离子特性随x增加并且在x = 20附近达到最大值,然后其降低,表明MAE。参与共振(N)的自旋数在g cong 2.02随x减少,并在x = 20附近达到最小值,此后增加,表明MAE。还观察到零场分裂参数(D)随x增加,在x = 15附近达到最大值,然后减小,显示出MAE。光吸收光谱在〜20,000 cm-1附近显示一个宽带,该宽带已分配给过渡6A1g(S)→4T1g(G)。从紫外线吸收边缘,评估了光学带隙能量和乌尔巴赫能量。有趣的是,这些眼镜的Urbach能量随x减小,并在x = 15附近达到最小值。对于直接和间接跃迁,在当前工作中获得的光学带隙在3.28–3.40 eV的范围内。还就组成对所有玻璃的物理参数进行了评估。

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