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Main Authors: Agosta, Lorenzo, Dzugutov, Mikhail, Briels, Wim, Hermansson, Kersti
Format: Preprint
Published: 2023
Subjects:
Online Access:https://arxiv.org/abs/2311.00329
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author Agosta, Lorenzo
Dzugutov, Mikhail
Briels, Wim
Hermansson, Kersti
author_facet Agosta, Lorenzo
Dzugutov, Mikhail
Briels, Wim
Hermansson, Kersti
contents We report a molecular dynamics simulation investigating the dynamics of a simple liquid in the proximity to a non-interacting smooth confining wall. A strong enhancement of the liquid diffusion is observed within the layers adjacent to the wall. We present an analysis of these results in terms of the scaling law earlier reported by one of us that relates the liquid diffusion rate to the excess entropy. It is demonstrated that this scaling law can successfully account for the observed diffusion enhancement in the liquid near to the confining wall. We show that the proximity of a confining wall results in the decrease of (the absolute value of) the local excess entropy in the liquid layers closest to the wall which induces the observed diffusion enhancement in these layers. These results thereby show that the application scope of the scaling law which has so far only been used for the description of the bulk liquid diffusion can be extended to the diffusion in liquids under nano-scale confinement.
format Preprint
id arxiv_https___arxiv_org_abs_2311_00329
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle The entropic origin of the enhancement of liquid diffusion at the confining wall
Agosta, Lorenzo
Dzugutov, Mikhail
Briels, Wim
Hermansson, Kersti
Materials Science
Chemical Physics
Computational Physics
We report a molecular dynamics simulation investigating the dynamics of a simple liquid in the proximity to a non-interacting smooth confining wall. A strong enhancement of the liquid diffusion is observed within the layers adjacent to the wall. We present an analysis of these results in terms of the scaling law earlier reported by one of us that relates the liquid diffusion rate to the excess entropy. It is demonstrated that this scaling law can successfully account for the observed diffusion enhancement in the liquid near to the confining wall. We show that the proximity of a confining wall results in the decrease of (the absolute value of) the local excess entropy in the liquid layers closest to the wall which induces the observed diffusion enhancement in these layers. These results thereby show that the application scope of the scaling law which has so far only been used for the description of the bulk liquid diffusion can be extended to the diffusion in liquids under nano-scale confinement.
title The entropic origin of the enhancement of liquid diffusion at the confining wall
topic Materials Science
Chemical Physics
Computational Physics
url https://arxiv.org/abs/2311.00329