Comprehensive comparison on optical properties of samarium oxide (micro/nano) particles doped tellurite glass for optoelectronics applications

Rare-earth oxides microparticles doped tellurite-based glass have been studied extensively to improve the capability of optoelectronic devices. We report a detailed comparison between two sets of glass series containing samarium microparticles and nanoparticles denoted as ZBTSm-MPs and ZBTSm-NPs, re...

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Published in:Journal of Materials Science: Materials in Electronics
Main Author: Azlan M.N.; Hajer S.S.; Halimah M.K.; Umar S.A.; Zaid M.H.M.; Hisam R.; Iskandar S.M.; Kenzhaliyev B.K.; Kassymova G.K.; Yusof N.N.
Format: Article
Language:English
Published: Springer 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85106306110&doi=10.1007%2fs10854-021-05961-z&partnerID=40&md5=55be57904467eac70aa8b95237faa13e
id 2-s2.0-85106306110
spelling 2-s2.0-85106306110
Azlan M.N.; Hajer S.S.; Halimah M.K.; Umar S.A.; Zaid M.H.M.; Hisam R.; Iskandar S.M.; Kenzhaliyev B.K.; Kassymova G.K.; Yusof N.N.
Comprehensive comparison on optical properties of samarium oxide (micro/nano) particles doped tellurite glass for optoelectronics applications
2021
Journal of Materials Science: Materials in Electronics
32
11
10.1007/s10854-021-05961-z
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85106306110&doi=10.1007%2fs10854-021-05961-z&partnerID=40&md5=55be57904467eac70aa8b95237faa13e
Rare-earth oxides microparticles doped tellurite-based glass have been studied extensively to improve the capability of optoelectronic devices. We report a detailed comparison between two sets of glass series containing samarium microparticles and nanoparticles denoted as ZBTSm-MPs and ZBTSm-NPs, respectively. The two sets of glass have been successfully fabricated via melt-quenching technique with chemical formula {[(TeO2)0.70 (B2O3)0.30]0.7 (ZnO)0.3}1−y (Sm2O3 (MPs/NPs))y with y = 0.005, 0.01, 0.02, 0.03, 0.04 and 0.05 mol fraction. The TEM analysis confirmed the existence and formation of nanoparticles in ZBTSm-NPs glasses. The density of ZBTSm-NPs glasses was found higher than ZBTSm-MPs glasses due to the distributions of nano-scale particles in tellurite glass network. There was a linear trend of increment in the refractive index in both sets of glass series along with the concentrations of dopants. The refractive index of ZBTSm-NPs glasses was found higher than ZBTSm-MPs glasses due to the shift in compactness of glass structure with nano-scale particles. In comparison, the absorption peaks of ZBTSm-MPs glasses were greater than ZBTSm-NPs glasses which were mainly due to the restriction of electrons mobility in glass network with nano-scale particles. The optical band gap energy in ZBTSm-NPs glasses was found greater than ZBTSm-MPs glasses which correspond to the widening of forbidden gap with nano-scale particles. The polarizability of ZBTSm-NPs and ZBTSm-MPs was found in non-linear trends along with dopant concentrations. Based on these findings, the improvement of optical properties has been made by introducing samarium oxide nanoparticles in tellurite glass which is beneficial for optoelectronic devices. © 2021, The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.
Springer
9574522
English
Article

author Azlan M.N.; Hajer S.S.; Halimah M.K.; Umar S.A.; Zaid M.H.M.; Hisam R.; Iskandar S.M.; Kenzhaliyev B.K.; Kassymova G.K.; Yusof N.N.
spellingShingle Azlan M.N.; Hajer S.S.; Halimah M.K.; Umar S.A.; Zaid M.H.M.; Hisam R.; Iskandar S.M.; Kenzhaliyev B.K.; Kassymova G.K.; Yusof N.N.
Comprehensive comparison on optical properties of samarium oxide (micro/nano) particles doped tellurite glass for optoelectronics applications
author_facet Azlan M.N.; Hajer S.S.; Halimah M.K.; Umar S.A.; Zaid M.H.M.; Hisam R.; Iskandar S.M.; Kenzhaliyev B.K.; Kassymova G.K.; Yusof N.N.
author_sort Azlan M.N.; Hajer S.S.; Halimah M.K.; Umar S.A.; Zaid M.H.M.; Hisam R.; Iskandar S.M.; Kenzhaliyev B.K.; Kassymova G.K.; Yusof N.N.
title Comprehensive comparison on optical properties of samarium oxide (micro/nano) particles doped tellurite glass for optoelectronics applications
title_short Comprehensive comparison on optical properties of samarium oxide (micro/nano) particles doped tellurite glass for optoelectronics applications
title_full Comprehensive comparison on optical properties of samarium oxide (micro/nano) particles doped tellurite glass for optoelectronics applications
title_fullStr Comprehensive comparison on optical properties of samarium oxide (micro/nano) particles doped tellurite glass for optoelectronics applications
title_full_unstemmed Comprehensive comparison on optical properties of samarium oxide (micro/nano) particles doped tellurite glass for optoelectronics applications
title_sort Comprehensive comparison on optical properties of samarium oxide (micro/nano) particles doped tellurite glass for optoelectronics applications
publishDate 2021
container_title Journal of Materials Science: Materials in Electronics
container_volume 32
container_issue 11
doi_str_mv 10.1007/s10854-021-05961-z
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85106306110&doi=10.1007%2fs10854-021-05961-z&partnerID=40&md5=55be57904467eac70aa8b95237faa13e
description Rare-earth oxides microparticles doped tellurite-based glass have been studied extensively to improve the capability of optoelectronic devices. We report a detailed comparison between two sets of glass series containing samarium microparticles and nanoparticles denoted as ZBTSm-MPs and ZBTSm-NPs, respectively. The two sets of glass have been successfully fabricated via melt-quenching technique with chemical formula {[(TeO2)0.70 (B2O3)0.30]0.7 (ZnO)0.3}1−y (Sm2O3 (MPs/NPs))y with y = 0.005, 0.01, 0.02, 0.03, 0.04 and 0.05 mol fraction. The TEM analysis confirmed the existence and formation of nanoparticles in ZBTSm-NPs glasses. The density of ZBTSm-NPs glasses was found higher than ZBTSm-MPs glasses due to the distributions of nano-scale particles in tellurite glass network. There was a linear trend of increment in the refractive index in both sets of glass series along with the concentrations of dopants. The refractive index of ZBTSm-NPs glasses was found higher than ZBTSm-MPs glasses due to the shift in compactness of glass structure with nano-scale particles. In comparison, the absorption peaks of ZBTSm-MPs glasses were greater than ZBTSm-NPs glasses which were mainly due to the restriction of electrons mobility in glass network with nano-scale particles. The optical band gap energy in ZBTSm-NPs glasses was found greater than ZBTSm-MPs glasses which correspond to the widening of forbidden gap with nano-scale particles. The polarizability of ZBTSm-NPs and ZBTSm-MPs was found in non-linear trends along with dopant concentrations. Based on these findings, the improvement of optical properties has been made by introducing samarium oxide nanoparticles in tellurite glass which is beneficial for optoelectronic devices. © 2021, The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.
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