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Influence of UV Irradiation and Heat Treatment on the Luminescence of Molecular Silver Clusters in Photo-Thermo-Refractive Glasses

机译:紫外线辐射和热处理对光热折射玻璃中分子银团簇发光的影响

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摘要

The luminescence spectra of photo-thermo-refractive (PTR) glasses containing cerium, silver, and antimony ions before and after UV irradiation and after heat treatment have been thoroughly investigated for the first time. It is shown that silver is present in the initial PTR glass in the form of ions and positively charged molecular clusters. After UV irradiation into the absorption band of cerium ions, silver partially passes to the neutral state in the form of atoms and neutral molecular clusters Ag_2, Ag_3, and Ag_4, which exhibit bright luminescence in the visible spectral range. Subsequent heat treatment at a temperature below the glass-formation temperature leads to an increase in the luminescence intensity due to the increase in the concentration of neutral molecular clusters. Heat treatment at a temperature above the glass-formation temperature leads to the formation of silver nanocrystals and luminescence quenching. It is proposed to use PTR glasses with molecular silver clusters as phosphors for converting UV radiation into the visible range for solar power engineering and white LEDs.
机译:含铈,银和锑离子的光热折射(PTR)玻璃在紫外线照射之前和之后以及热处理之后的发光光谱已得到首次彻底研究。结果表明,最初的PTR玻璃中的银以离子和带正电的分子簇的形式存在。在紫外线照射到铈离子的吸收带中后,银以原子和中性分子簇Ag_2,Ag_3和Ag_4的形式部分进入中性态,它们在可见光谱范围内显示出明亮的发光。由于中性分子簇的浓度增加,随后在低于玻璃形成温度的温度下的热处理导致发光强度增加。在高于玻璃形成温度的温度下进行热处理导致形成银纳米晶体和发光猝灭。提出使用具有分子银簇的PTR玻璃作为磷光体,以将紫外线辐射转换为可见光范围,以用于太阳能工程和白光LED。

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