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铒镱共掺杂的纳米结构氟化钆钠玻璃陶瓷的非线性光学性质

Non-Linear Optical Properties of Er-Yb-Doped NaGdF Nanostructured Glass-Ceramics.

作者信息

Velázquez José J, Gorni Giulio, Balda Rolindes, Fernández Joaquin, Pascual Laura, Durán Alicia, Pascual Maria J

机构信息

Centre for Functional and Surface Functionalized Glass (FunGlass), Alexander Dubček University of Trenčín, 911 50 Trenčín, Slovakia.

Instituto de Cerámica y Vidrio, ICV-CSIC, 28049 Madrid, Spain.

出版信息

Nanomaterials (Basel). 2020 Jul 21;10(7):1425. doi: 10.3390/nano10071425.

Abstract

Transparent oxyfluoride glass-ceramics containing NaGdF nanocrystals were prepared by melt-quenching and doped with Er (0.5 mol%) and different amounts of Yb (0-2 mol%). The selected dopant concentration the crystallization thermal treatments were chosen to obtain the most efficient visible up-conversion emissions, together with near infrared emissions. The crystal size increased with dopant content and treatment time. NaGdF NCs with a size ranging 9-30 nm were obtained after heat treatments at T + 20-80 °C as confirmed by X-ray diffraction and high-resolution transmission electron microscopy. Energy dispersive X-ray analysis shows the incorporation of rare earth ions into the NaGdF nanocrystals. Near-infrared emission spectra, together with the up-conversion emissions were measured. The optical characterization of the glass-ceramics clearly shows that Er and Yb ions are incorporated in the crystalline phase. Moreover, visible up-conversion emissions could be tuned by controlling the nanocrystals size through appropriated heat treatment, making possible a correlation between structural and optical properties.

摘要

通过熔融淬火制备了含有NaGdF纳米晶体的透明氟氧化物玻璃陶瓷,并掺杂了Er(0.5摩尔%)和不同含量的Yb(0 - 2摩尔%)。选择特定的掺杂剂浓度和晶化热处理条件,以获得最有效的可见上转换发射以及近红外发射。晶体尺寸随掺杂剂含量和处理时间增加。经X射线衍射和高分辨率透射电子显微镜证实,在T + 20 - 80°C热处理后获得了尺寸范围为9 - 30 nm的NaGdF纳米晶。能量色散X射线分析表明稀土离子掺入了NaGdF纳米晶体中。测量了近红外发射光谱以及上转换发射光谱。玻璃陶瓷的光学表征清楚地表明,Er和Yb离子掺入了晶相。此外,通过适当的热处理控制纳米晶体尺寸可以调节可见上转换发射,从而实现结构和光学性质之间的关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cb0/7408096/a3b7303b8e8d/nanomaterials-10-01425-g001.jpg

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