Glass-formation region of ternary Sn-Sb-Se-based chalcogenide glasses

Tin-antimony-selenium (TAS)-based system belongs to the ternary chalcogenide compounds of IV-V-VI group owing to their heavy elemental masses, their glass formation region was assumed to be small comparing to their counterpart elements in the same group. However, there were rare published reports on...

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Main Authors: Adam, A. B., Sakrani, Samsudi, Wahab, Y.
Format: Article
Language:en
Published: Springer Netherlands 2005
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Online Access:http://eprints.utm.my/7788/1/Samsudi_Bin_Sakrani_2005_Glass_Formation_Region_Of_Ternary.pdf
http://eprints.utm.my/7788/
http://dx.doi.org/10.1007/s10853-005-0655-2
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author Adam, A. B.
Sakrani, Samsudi
Wahab, Y.
author_facet Adam, A. B.
Sakrani, Samsudi
Wahab, Y.
author_sort Adam, A. B.
building UTM Library
collection Institutional Repository
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
continent Asia
country Malaysia
description Tin-antimony-selenium (TAS)-based system belongs to the ternary chalcogenide compounds of IV-V-VI group owing to their heavy elemental masses, their glass formation region was assumed to be small comparing to their counterpart elements in the same group. However, there were rare published reports on their glass structure, while their glass boundary formation region was not yet reported. It was the aim of this paper to map their glass-forming region experimentally using XRD and validate it theoretically using the average co-ordination number, μ, and the fraction of the bond distributions, f, from chemical order model. Theoretically, it was validated that the glass formation was arrested between μ ≤ 2.4 and the fraction of Sn-Se bonds, f sn-se < 44.5%. XRD analyses of 66-as-prepared samples revealed that the glass formation region was located within the predicted area that mapped in structural triangle.
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spelling my.utm.eprints-77882010-06-02T01:48:11Z http://eprints.utm.my/7788/ Glass-formation region of ternary Sn-Sb-Se-based chalcogenide glasses Adam, A. B. Sakrani, Samsudi Wahab, Y. QC Physics Tin-antimony-selenium (TAS)-based system belongs to the ternary chalcogenide compounds of IV-V-VI group owing to their heavy elemental masses, their glass formation region was assumed to be small comparing to their counterpart elements in the same group. However, there were rare published reports on their glass structure, while their glass boundary formation region was not yet reported. It was the aim of this paper to map their glass-forming region experimentally using XRD and validate it theoretically using the average co-ordination number, μ, and the fraction of the bond distributions, f, from chemical order model. Theoretically, it was validated that the glass formation was arrested between μ ≤ 2.4 and the fraction of Sn-Se bonds, f sn-se < 44.5%. XRD analyses of 66-as-prepared samples revealed that the glass formation region was located within the predicted area that mapped in structural triangle. Springer Netherlands 2005 Article PeerReviewed application/pdf en http://eprints.utm.my/7788/1/Samsudi_Bin_Sakrani_2005_Glass_Formation_Region_Of_Ternary.pdf Adam, A. B. and Sakrani, Samsudi and Wahab, Y. (2005) Glass-formation region of ternary Sn-Sb-Se-based chalcogenide glasses. Journal of Materials Science, 40 (7). pp. 1571-1576. ISSN 1573-4803 http://dx.doi.org/10.1007/s10853-005-0655-2 10.1007/s10853-005-0655-2
spellingShingle QC Physics
Adam, A. B.
Sakrani, Samsudi
Wahab, Y.
Glass-formation region of ternary Sn-Sb-Se-based chalcogenide glasses
title Glass-formation region of ternary Sn-Sb-Se-based chalcogenide glasses
title_full Glass-formation region of ternary Sn-Sb-Se-based chalcogenide glasses
title_fullStr Glass-formation region of ternary Sn-Sb-Se-based chalcogenide glasses
title_full_unstemmed Glass-formation region of ternary Sn-Sb-Se-based chalcogenide glasses
title_short Glass-formation region of ternary Sn-Sb-Se-based chalcogenide glasses
title_sort glass-formation region of ternary sn-sb-se-based chalcogenide glasses
topic QC Physics
url http://eprints.utm.my/7788/1/Samsudi_Bin_Sakrani_2005_Glass_Formation_Region_Of_Ternary.pdf
http://eprints.utm.my/7788/
http://dx.doi.org/10.1007/s10853-005-0655-2
url_provider http://eprints.utm.my/