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Erschienen in: Journal of Materials Science: Materials in Electronics 5/2020

29.01.2020

Effect of neodymium nanoparticles on optical properties of zinc tellurite glass system

verfasst von: M. K. Halimah, A. A. Awshah, A. M. Hamza, K. T. Chan, S. A. Umar, S. H. Alazoumi

Erschienen in: Journal of Materials Science: Materials in Electronics | Ausgabe 5/2020

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Abstract

A system of zinc tellurite glasses with chemical composition [(TeO2)0.70 (ZnO)0.30]1-x (Nd2O3 NPs)x, where x ranged from 0.01 to 0.05 molar fraction have been prepared and coded as TZND have been fabricated using the melt-quenching technique. The aim was to study the structural, physical, and optical properties of the sample glasses. The choice of the chemical composition was to provide high refractive index, favourable metallization criterion and other optical qualities for linear and non-linear optical applications. The optical properties were studied using the UV–Vis spectroscopic analysis. The density and molar volume were found to increase with Nd2O3 NPs concentration. The FTIR spectral analysis showed the existence of TeO3 and TeO4 structural units which varying concentrations of TeO4 observed with Nd2O3 nanoparticles (NPs). The transmission electron microscopy (TEM) analysis showed the agglomeration of the Nd2O3 NPs in the morphological structure of the glasses. The variations of the optical parameters were mostly related to the variation in the structural nature of the glasses (TeO3 and TeO4 concentration changes). High refractive index value, ranging between 2.5470 and 2.6093, favourable metallization criterion value range of 0.3406 and 0.3535 as well as high polarizabilities and the optical basicity reveal that the glasses have high potential in optical fibre technology as well as optical non-linear (laser) applications.

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Metadaten
Titel
Effect of neodymium nanoparticles on optical properties of zinc tellurite glass system
verfasst von
M. K. Halimah
A. A. Awshah
A. M. Hamza
K. T. Chan
S. A. Umar
S. H. Alazoumi
Publikationsdatum
29.01.2020
Verlag
Springer US
Erschienen in
Journal of Materials Science: Materials in Electronics / Ausgabe 5/2020
Print ISSN: 0957-4522
Elektronische ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-020-02907-9

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