Structural, optical and thermal characteristics of GeO2-PbO-SrO-AlF3-MgF2 glasses
In the presented work, the structural, optical and thermal characteristics of GeO2-PbO-SrO-AlF3-MgF2 glasses have been investigated. In this regard, different germanate glasses containing of PbO, SrO, MgF2 and AlF3 were prepared by conventional melt quenching technique between two steel sheets. The...
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doaj-07e36f80456445799314ae63bffd7dfa2021-05-02T12:47:32ZengTaylor & Francis GroupJournal of Asian Ceramic Societies2187-07642018-04-016216216810.1080/21870764.2018.14790571479057Structural, optical and thermal characteristics of GeO2-PbO-SrO-AlF3-MgF2 glassesAli Baradaran0Majid Tavoosi1Ali Ghasemi2Malek- Ashtar University of Technology (MUT)Malek- Ashtar University of Technology (MUT)Malek- Ashtar University of Technology (MUT)In the presented work, the structural, optical and thermal characteristics of GeO2-PbO-SrO-AlF3-MgF2 glasses have been investigated. In this regard, different germanate glasses containing of PbO, SrO, MgF2 and AlF3 were prepared by conventional melt quenching technique between two steel sheets. The produced samples were characterized using X-ray diffraction, differential thermal calorimetry, Fourier transform infrared and UV-Vis spectroscopy. Based on results, the glass-forming ability and thermal stability of GeO2-PbO glasses increase by replacement of PbO with SrO in glass composition. This replacement has negligible effects on optical properties of prepared glasses and the values of Eg°pt and EU of GeO2-PbO-SrO glassy system are in the range of 2.98–3.02 and 0.27–0.28 eV, respectively. In contrast, the optical properties, overall transparency, glass-forming ability and thermal stability of GeO2-PbO-SrO glasses decrease by replacement of PbO with MgF2 and AlF3.http://dx.doi.org/10.1080/21870764.2018.1479057Glassesfluoridesoptical propertiesthermal behavior |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ali Baradaran Majid Tavoosi Ali Ghasemi |
spellingShingle |
Ali Baradaran Majid Tavoosi Ali Ghasemi Structural, optical and thermal characteristics of GeO2-PbO-SrO-AlF3-MgF2 glasses Journal of Asian Ceramic Societies Glasses fluorides optical properties thermal behavior |
author_facet |
Ali Baradaran Majid Tavoosi Ali Ghasemi |
author_sort |
Ali Baradaran |
title |
Structural, optical and thermal characteristics of GeO2-PbO-SrO-AlF3-MgF2 glasses |
title_short |
Structural, optical and thermal characteristics of GeO2-PbO-SrO-AlF3-MgF2 glasses |
title_full |
Structural, optical and thermal characteristics of GeO2-PbO-SrO-AlF3-MgF2 glasses |
title_fullStr |
Structural, optical and thermal characteristics of GeO2-PbO-SrO-AlF3-MgF2 glasses |
title_full_unstemmed |
Structural, optical and thermal characteristics of GeO2-PbO-SrO-AlF3-MgF2 glasses |
title_sort |
structural, optical and thermal characteristics of geo2-pbo-sro-alf3-mgf2 glasses |
publisher |
Taylor & Francis Group |
series |
Journal of Asian Ceramic Societies |
issn |
2187-0764 |
publishDate |
2018-04-01 |
description |
In the presented work, the structural, optical and thermal characteristics of GeO2-PbO-SrO-AlF3-MgF2 glasses have been investigated. In this regard, different germanate glasses containing of PbO, SrO, MgF2 and AlF3 were prepared by conventional melt quenching technique between two steel sheets. The produced samples were characterized using X-ray diffraction, differential thermal calorimetry, Fourier transform infrared and UV-Vis spectroscopy. Based on results, the glass-forming ability and thermal stability of GeO2-PbO glasses increase by replacement of PbO with SrO in glass composition. This replacement has negligible effects on optical properties of prepared glasses and the values of Eg°pt and EU of GeO2-PbO-SrO glassy system are in the range of 2.98–3.02 and 0.27–0.28 eV, respectively. In contrast, the optical properties, overall transparency, glass-forming ability and thermal stability of GeO2-PbO-SrO glasses decrease by replacement of PbO with MgF2 and AlF3. |
topic |
Glasses fluorides optical properties thermal behavior |
url |
http://dx.doi.org/10.1080/21870764.2018.1479057 |
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1721491361043054592 |