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Solid–Liquid Interfacial Free Energy from Computer Simulations: Challenges and Recent Advances

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posted on 2025-09-24, 15:24 authored by Nicodemo Di Pasquale, Jesús Algaba, Pablo Montero de Hijes, Ignacio Sanchez-Burgos, Andres R Tejedor, Stephen R Yeandel, Felipe J Blas, Ruslan DavidchackRuslan Davidchack, Jorge R Espinosa, Colin L Freeman, John H Harding, Brian B Laird, Eduardo Sanz, Carlos Vega, Lorenzo Rovigatti
The study of interfacial properties in liquid-liquid and liquid-vapor systems has a history of nearly 200 years, with significant contributions from scientific luminaries such as Thomas Young and Willard Gibbs. However, a similar level of understanding of solid-liquid interfaces has emerged only more recently, largely because of the numerous complications associated with the thermodynamics needed to describe them. The accurate calculation of the interfacial free energy of solid-liquid systems is central to determining which interfaces will be observed and their properties. However, designing and analyzing the molecular dynamics simulations required to do this remains challenging, unlike the liquid-liquid or liquid-vapor cases, because of the unique complications associated with solid-liquid systems. Specifically, the lattice structure of solids introduces spatial directionality, and atomic configurations in solids can be altered by stretching. The primary aim of this review is to provide an overview of the numerical approaches developed to address the challenge of calculating the interfacial free energy in solid-liquid systems. These approaches are classified as (i) direct methods, which compute interfacial free energies explicitly, albeit often through convoluted procedures, and (ii) indirect methods, which derive these free energies as secondary results obtained from the analysis of simulations of an idealized experimental configuration. We also discuss two key topics related to the calculation of the interfacial free energy of solid-liquid systems: nucleation theory and curved interfaces, which represent important problems where research remains highly active.<p></p>

History

Author affiliation

College of Science & Engineering Comp' & Math' Sciences

Version

  • VoR (Version of Record)

Published in

Chemical Reviews

Volume

125

Issue

10

Pagination

5003 - 5053

Publisher

American Chemical Society (ACS)

issn

0009-2665

eissn

1520-6890

Copyright date

2025

Available date

2025-09-24

Spatial coverage

United States

Language

en

Deposited by

Professor Ruslan Davidchack

Deposit date

2025-09-09

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