Improved chemical durability and thermal stability of zinc boro-tellurite glass
Glasses with compositions (60-x) TeO2 +30B2O3+10ZnO+xEr2O3 (where x=0, 0.5, 1, 1.5 and 2.0 mol%) were prepared by melt quenching method. The chemical durability of these glasses measured from their weight before and after weathering by water and ammonium hydroxide showed significant improvement with...
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National Institute R and D of Materials Physics
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Online Access: | http://eprints.utm.my/id/eprint/53103/1/MdRahimSahar2014_ImprovedChemicalDurabilityandThermalStability.pdf http://eprints.utm.my/id/eprint/53103/ http://chalcogen.ro/453_Mahraz.pdf |
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my.utm.531032018-07-19T07:25:06Z http://eprints.utm.my/id/eprint/53103/ Improved chemical durability and thermal stability of zinc boro-tellurite glass Said Mahraz, Zahra Ashur Sahar, Md. Rahim Ghoshal, Sib Krishna Q Science Glasses with compositions (60-x) TeO2 +30B2O3+10ZnO+xEr2O3 (where x=0, 0.5, 1, 1.5 and 2.0 mol%) were prepared by melt quenching method. The chemical durability of these glasses measured from their weight before and after weathering by water and ammonium hydroxide showed significant improvement with the increase of rare earth contents. X-ray diffraction (XRD) measurements confirmed the amorphous nature of the as-prepared glasses. The glass transition temperature, crystallization temperature and melting point of the samples were determined using differential thermal analyzer. The elemental analyses are performed using EDX and the surface morphology by SEM technique. The enhancement in the thermal stability with the addition of the erbium contents indicates the increased glass forming tendency against crystallization. The fragility factor and Hruby parameter are increased from 1.098-2.897 and 145-160 respectively as the erbium concentration increased from 0-2.0 mol%. The influence of erbium oxide on the surface morphology, chemical durability and water resistivity of the zinc-boro-tellurite glasses are examined. These attractive features on improved chemical durability and thermal stability suggests that these glasses can be nominated as suitable host for the development of solid state lasers with good performance in different temperature and environments. National Institute R and D of Materials Physics 2014 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/53103/1/MdRahimSahar2014_ImprovedChemicalDurabilityandThermalStability.pdf Said Mahraz, Zahra Ashur and Sahar, Md. Rahim and Ghoshal, Sib Krishna (2014) Improved chemical durability and thermal stability of zinc boro-tellurite glass. Chalcogenide Letters, 11 (9). pp. 453-460. ISSN 1584-8663 http://chalcogen.ro/453_Mahraz.pdf |
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Glasses with compositions (60-x) TeO2 +30B2O3+10ZnO+xEr2O3 (where x=0, 0.5, 1, 1.5 and 2.0 mol%) were prepared by melt quenching method. The chemical durability of these glasses measured from their weight before and after weathering by water and ammonium hydroxide showed significant improvement with the increase of rare earth contents. X-ray diffraction (XRD) measurements confirmed the amorphous nature of the as-prepared glasses. The glass transition temperature, crystallization temperature and melting point of the samples were determined using differential thermal analyzer. The elemental analyses are performed using EDX and the surface morphology by SEM technique. The enhancement in the thermal stability with the addition of the erbium contents indicates the increased glass forming tendency against crystallization. The fragility factor and Hruby parameter are increased from 1.098-2.897 and 145-160 respectively as the erbium concentration increased from 0-2.0 mol%. The influence of erbium oxide on the surface morphology, chemical durability and water resistivity of the zinc-boro-tellurite glasses are examined. These attractive features on improved chemical durability and thermal stability suggests that these glasses can be nominated as suitable host for the development of solid state lasers with good performance in different temperature and environments. |
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Article |
author |
Said Mahraz, Zahra Ashur Sahar, Md. Rahim Ghoshal, Sib Krishna |
author_facet |
Said Mahraz, Zahra Ashur Sahar, Md. Rahim Ghoshal, Sib Krishna |
author_sort |
Said Mahraz, Zahra Ashur |
title |
Improved chemical durability and thermal stability of zinc boro-tellurite glass |
title_short |
Improved chemical durability and thermal stability of zinc boro-tellurite glass |
title_full |
Improved chemical durability and thermal stability of zinc boro-tellurite glass |
title_fullStr |
Improved chemical durability and thermal stability of zinc boro-tellurite glass |
title_full_unstemmed |
Improved chemical durability and thermal stability of zinc boro-tellurite glass |
title_sort |
improved chemical durability and thermal stability of zinc boro-tellurite glass |
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National Institute R and D of Materials Physics |
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2014 |
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http://eprints.utm.my/id/eprint/53103/1/MdRahimSahar2014_ImprovedChemicalDurabilityandThermalStability.pdf http://eprints.utm.my/id/eprint/53103/ http://chalcogen.ro/453_Mahraz.pdf |
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