Mean-coordination number dependence of the fragility in Ge–Se–In glass-forming liquids

Differential scanning calorimetry measurements have been performed on elemental Se as well as on Ge x Se 94− x In 6 ( x=4, 8, and 11 at%) and on Ge y Se 88− y In 12 ( y=5, 7, and 9 at%) chalcogenide glasses. From the cooling rate dependence of the fictive temperature, the apparent activation energie...

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Veröffentlicht in:Physica. B, Condensed matter Condensed matter, 2007-02, Vol.389 (2), p.275-280
Hauptverfasser: Saffarini, G., Saiter, A., Garda, M.R., Saiter, J.M.
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Sprache:eng
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Zusammenfassung:Differential scanning calorimetry measurements have been performed on elemental Se as well as on Ge x Se 94− x In 6 ( x=4, 8, and 11 at%) and on Ge y Se 88− y In 12 ( y=5, 7, and 9 at%) chalcogenide glasses. From the cooling rate dependence of the fictive temperature, the apparent activation energies, Δ h*, and the fragility indices, m, as defined in the strong–fragile glass-forming liquid concept, are determined. It is found that, in Ge–Se–In system, there is an evolution from strong ( m=67) to fragile ( m=116) glass-forming liquids. The dependence of ‘ m’ on the mean-coordination number, Z, is also obtained. This dependence is rationalized by assuming that, in this glassy alloy system, there is a tendency for the formation of In 2Se 3 clusters.
ISSN:0921-4526
1873-2135
DOI:10.1016/j.physb.2006.06.163