String model for the dynamics of glass-forming liquids

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Abstract

We test the applicability of a living polymerization theory to describe cooperative string-like particle rearrangement clusters (strings) observed in simulations of a coarse-grained polymer melt. The theory quantitatively describes the interrelation between the average string length L, configurational entropy Sconf, and the order parameter for string assembly Φ without free parameters. Combining this theory with the Adam-Gibbs model allows us to predict the relaxation time τ in a lower temperature T range than accessible by current simulations. In particular, the combined theories suggest a return to Arrhenius behavior near Tg and a low T residual entropy, thus avoiding a Kauzmann "entropy crisis." © 2014 AIP Publishing LLC.

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Pazmiño Betancourt, B. A., Douglas, J. F., & Starr, F. W. (2014). String model for the dynamics of glass-forming liquids. Journal of Chemical Physics, 140(20). https://doi.org/10.1063/1.4878502

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