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Impurities in large scale produced Nd-doped phosphate laser glasses. II. Pt ion and Pt inclusion

DOI:10.1016/j.omx.2019.100032 期刊:Optical Materials: X 出版年份:2019 更新时间:2025-09-12 10:27:22
摘要: Platinum is a special kind of impurity in Nd-doped phosphate laser glasses. Firstly, its presence in the glass depends on the production processes, rather than the purity of the raw materials used. Secondly, there coexist Pt ion and Pt inclusion in the glass, which one is the oxidized and the other is the reduced. The detection for these two kinds of Pt impurities in the large-scale produced Nd-doped phosphate laser glasses can re?ect the control level and stability of the processes. To determine more accurately the content of Pt ion in the glass, a hemi-cyanine dye, instead of SnCl2 previously used, is utilized to color Pt ion solution by dissolving the glass. On the basis of such a new hemi-cyanine spectrophotometric analysis, the factor of proportionality between Pt ion content and its absorption coe?cient at 400 nm is determined and discussed. To avoid the interference from other cations in the multi-cation solution by dissolving the glass, when doing ICP-MS analysis for Pt, a magnetic poly-ionic liquid is synthesized successfully by bonding an ionic liquid to nano-Fe3O4 particles covered by C. Such a new magnetic poly-ionic liquid can adsorb Pt ions with a better selection. The element distribution of Pt, O and P for di?erently sized Pt inclusions in the glass is analyzed by EPMA.
作者: Si Chen,Youkuo Chen,Jimeng Cheng,Qinling Zhou,Wei Chen,Lili Hua,Georges Boulon
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Investigating the presence and control of Pt impurities (both ion and inclusion forms) in large-scale produced Nd-doped phosphate laser glasses to ensure product quality and consistency.

The developed hemi-cyanine spectrophotometry and magnetic poly-ionic liquid selective adsorption methods provide accurate and sensitive means to detect Pt ion content in Nd-doped phosphate laser glasses. EPMA analysis revealed the presence of Pt inclusions and their characteristics. These methods are crucial for controlling the quality and consistency of large-scale produced laser glasses.

The study focuses on Pt impurities in Nd-doped phosphate laser glasses, and the methods developed may not be directly applicable to other types of glasses or impurities. The accuracy of Pt ion content determination could be affected by the complex matrix of the glass solution.

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