硫系化合物
材料科学
杂质
机械强度
试剂
热处理
离解(化学)
氧化物
化学工程
纳米技术
复合材料
光电子学
物理化学
冶金
有机化学
化学
工程类
作者
Sylvain Danto,Daniel Thompson,Peter Wachtel,J. David Musgraves,Kathleen Richardson,Baptiste Giroire
摘要
Chalcogenide glasses have been widely studied due to their extraordinary transparency in the mid‐infrared region. Their transparency, combined with tailorable thermo‐mechanical properties, makes them ideal candidates for various optic applications. Extrinsic impurities within the glass matrix can impede their integration in components where low optical loss is a requirement. Additionally, chalcogenide materials typically exhibit low mechanical strength due to the comparatively weaker average bond strength of constituents. Here, we report findings of efforts to explore various purification methods on A s 2 S e 3 glasses to improve their optical and mechanical properties. These methods involve oxides removal by thermal treatment of the reagents, and addition of A l C l 3 impurity‐getters in the melt followed by distillation. We show that these techniques yield very effective results on the removal of hydroxyls, water, and oxide impurities. We also observe a recurrent increase in the S e‐ H vibrational band, with the concentration of the S e‐ H species escalating to several tens‐of‐ppm, depending on the purification method. These increases are associated with the preferential dissociation of hydrogen‐containing species. Investigations of the structural, thermal, and mechanical properties of the glass were compared as a function of purification method, and the influence of impurity content on these material attributes is presented.
科研通智能强力驱动
Strongly Powered by AbleSci AI