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Influence of silver and copper doping on luminescent properties of zinc-phosphate glasses after x-ray irradiation

机译:银铜掺杂对X射线辐照后磷酸锌玻璃发光性能的影响

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摘要

It is shown, experimentally, that in silver- and copper-containing zinc-phosphate glasses, metal molecular clusters are formed during the glass synthesis. X-ray irradiation of these glasses led to the considerable increase of its luminescence in visible spectral range. This effect is caused by the transformation of the charged metal molecular clusters into the neutral state. Luminescence and excitation spectra of the glass, doped with silver and copper simultaneously, change significantly in comparison with the spectra of glasses doped with one metal. The reason for this can be the formation of hybrid Ag_nCu_m molecular clusters. The computer simulation of the structure and optical properties of such clusters by the time-dependent density functional theory method is presented. It is shown that the optimal luminescent material for photonics application, in comparison with other studied materials, is glass, containing hybrid molecular clusters.
机译:实验表明,在含银和铜的磷酸锌玻璃中,在玻璃合成过程中形成了金属分子簇。这些玻璃的X射线辐射导致其在可见光谱范围内的发光显着增加。该效应是由于带电的金属分子簇转变为中性态而引起的。与同时掺杂一种金属的玻璃的光谱相比,同时掺杂有银和铜的玻璃的发光光谱和激发光谱发生了显着变化。其原因可能是形成了混合的Ag_nCu_m分子簇。利用时变密度泛函理论方法对这类团簇的结构和光学性质进行了计算机模拟。结果表明,与其他研究材料相比,光子学应用的最佳发光材料是玻璃,其中包含杂化分子簇。

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