Water under hydrophobic confinement: entropy and diffusion

Fuente: arXiv
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Autori principali: Agosta, Lorenzo, Hermansson, Kersti, Dzugutov, Mikhail
Natura: Preprint
Pubblicazione: 2024
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author Agosta, Lorenzo
Hermansson, Kersti
Dzugutov, Mikhail
author_facet Agosta, Lorenzo
Hermansson, Kersti
Dzugutov, Mikhail
contents The properties of liquid water are known to change drastically in confined geometries. A most interesting and intriguing phenomenon is that the diffusion of water is found to be strongly enhanced by the proximity of a hydrophobic confining wall relative to the bulk diffusion. We report a molecular dynamics simulation using a classical water model investigating the water diffusion near a non-interacting smooth confining wall, which is assumed to imitate a hydrophobic surface. A pronounced diffusion enhancement is observed in the water layers adjacent to the wall. We present evidence that the observed diffusion enhancement can be accounted for, with numerical accuracy, using the universal scaling law for liquid diffusion that relates the liquid diffusion rate to the excess entropy. These results show that the scaling law, that has so far only been used for the description of the diffusion in simple liquids, can successfully describe the diffusion in water. It is thus shown that the law can be used for the description of water dynamics under nano-scale confinement which is currently a subject of intense research activity.
format Preprint
id arxiv_https___arxiv_org_abs_2412_03726
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Water under hydrophobic confinement: entropy and diffusion
Agosta, Lorenzo
Hermansson, Kersti
Dzugutov, Mikhail
Soft Condensed Matter
Mesoscale and Nanoscale Physics
Chemical Physics
The properties of liquid water are known to change drastically in confined geometries. A most interesting and intriguing phenomenon is that the diffusion of water is found to be strongly enhanced by the proximity of a hydrophobic confining wall relative to the bulk diffusion. We report a molecular dynamics simulation using a classical water model investigating the water diffusion near a non-interacting smooth confining wall, which is assumed to imitate a hydrophobic surface. A pronounced diffusion enhancement is observed in the water layers adjacent to the wall. We present evidence that the observed diffusion enhancement can be accounted for, with numerical accuracy, using the universal scaling law for liquid diffusion that relates the liquid diffusion rate to the excess entropy. These results show that the scaling law, that has so far only been used for the description of the diffusion in simple liquids, can successfully describe the diffusion in water. It is thus shown that the law can be used for the description of water dynamics under nano-scale confinement which is currently a subject of intense research activity.
title Water under hydrophobic confinement: entropy and diffusion
topic Soft Condensed Matter
Mesoscale and Nanoscale Physics
Chemical Physics
url https://arxiv.org/abs/2412.03726