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The Young-Laplace equation for a solid-liquid interface

delete2020-11-19
delete48
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OA
AI
P
Pablo Montero de Hijes
K
Kaihang Shi
E
Eva G. Noya
E
Erik E. Santiso
K
Keith E. Gubbins
E
Eduardo Sanz
C
Carlos Vega *
DOI:10.1063/5.0032602delete
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Abstract

Abstract

En 中文
The application of the Young-Laplace equation to a solid-liquid interface is considered. Computer simulations show that the pressure inside a solid cluster of hard spheres is smaller than the external pressure of the liquid (both for small and large clusters). This would suggest a negative value for the interfacial free energy. We show that in a Gibbsian description of the thermodynamics of a curved solid-liquid interface in equilibrium, the choice of the thermodynamic (rather than mechanical) pressure is required, as suggested by Tolman for the liquid-gas scenario. With this definition, the interfacial free energy is positive, and the values obtained are in excellent agreement with previous results from nucleation studies. Although, for a curved fluid-fluid interface, there is no distinction between mechanical and thermal pressures (for a sufficiently large inner phase), in the solid-liquid interface, they do not coincide, as hypothesized by Gibbs. Published under license by AIP Publishing.
Keywords:
LENNARD-JONES FLUIDS
COMPUTER-SIMULATION
MOLECULAR-DYNAMICS
FREE-ENERGIES
THERMODYNAMICS
NUCLEATION
SURFACE
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Journal

Journal of Chemical Physics cover
Journal of Chemical Physics
IF:
3.1
Papers:
7.2W
Citations:
23.2W

Organization

C
Complutense University of Madrid
Scholars:
2.6W
Papers: 2.2W
Citations: 31
C
consejo superior de investigaciones cientificas (csic)
Scholars:
8.8W
Papers: 8.5W
Citations: 125
N
North Carolina State University
Scholars:
2.6W
Papers: 2.3W
Citations: 3.7W
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