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January 13, 2015Physical Review Letters59 citationsOpen Access

Finite-Size Effects on Liquid-Solid Phase Coexistence and the Estimation of Crystal Nucleation Barriers

ASAntonia StattUniversity of Illinois Urbana-ChampaignPVPeter VirnauJohannes Gutenberg University MainzKBKurt BinderRutgers, The State University of New Jersey

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Abstract

A fluid in equilibrium in a finite volume V with particle number N at a density ρ=N/V exceeding the onset density ρ₅ of freezing may exhibit phase coexistence between a crystalline nucleus and surrounding fluid. Using a method suitable for the estimation of the chemical potential of dense fluids, we obtain the excess free energy due to the surface of the crystalline nucleus. There is neither a need to precisely locate the interface nor to compute the (anisotropic) interfacial tension. As a test case, a soft version of the Asakura-Oosawa model for colloid-polymer mixtures is treated. While our analysis is appropriate for crystal nuclei of arbitrary shape, we find the nucleation barrier to be compatible with a spherical shape and consistent with classical nucleation theory.

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Cite This Study

Statt et al. (2015) studied this question.

synapsesocial.com/papers/69d80d87798943bad8d17c9dhttps://doi.org/10.1103/physrevlett.114.026101
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