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Nanophase separation and effects on properties of Ge–As–Se chalcogenide glasses
Journal article   Peer reviewed

Nanophase separation and effects on properties of Ge–As–Se chalcogenide glasses

F. Xia, S. Baccaro, W. Wang, L. Pilloni, X. Zhang, H. Zeng and G. Chen
Journal of Non-Crystalline Solids, Vol.354(12-13), pp.1137-1141
2008
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Abstract

Nanophase separation in the bulk Ge–As–Se chalcogenide glasses was observed by SEM and supported by XRD and IR measurements. Effects of nanophase separation on glass transition temperature (Tg), microhardness (Hv), optical band gap (Eopt) and thermal expansion coefficient (α) were investigated in terms of glass rigidity transitions. According to the correlations between the properties and average coordination number Z, it is established that nanophase separation becomes more intensive when Z is larger than 2.64. PACS 61.10.Nz; 64.75.+g; 78.30.Hv; 81.05.Kf

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Collaboration types
International collaboration
Citation topics
5 Physics
5.193 Thermoelectric Materials
5.193.702 Chalcogenide Glasses
Web Of Science research areas
Materials Science, Ceramics
Materials Science, Multidisciplinary
ESI research areas
Physics
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