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Composition dependence of glass transition temperature and fragility. I. A topological model incorporating
Prabhat K Gupta1, John C Mauro
1Department of Materials Science and Engineering, Ohio State University, Columbus, Ohio 43210, USA.
Abstract:
We present a topological model for the composition dependence of glass transition temperature and fragility. Whereas previous topological models are derived for zero temperature conditions, our approach incorporates the concept of temperature-dependent constraints that freeze in as the system is cooled from high temperature. Combining this notion of temperature-dependent constraints with the Adam-Gibbs model of viscosity, we derive an analytical expression for the scaling of glass transition temperature and fragility in the binary Ge(x)Se(1-x) system. In the range of 0
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