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The Intrinsic Fragility of the Liquid-Vapor Interface: A Stress Network Perspective.


ABSTRACT: The evolution of the liquid-vapor interface of a Lennard-Jones fluid is examined with molecular dynamics simulations using the intrinsic sampling method. Results suggest clear damping of the intrinsic profiles with increasing temperature. Investigating the surface stress distribution, we have identified a linear variation of the space-filling nature (fractal dimension) of the stress clusters at the intrinsic surface with increasing surface tension or, equivalently, with decreasing temperature. A percolation analysis of these stress networks indicates that the stress field is more disjointed at higher temperatures. This leads to more fragile (or poorly connected) interfaces which result in a reduction in surface tension.

SUBMITTER: Rahman MR 

PROVIDER: S-EPMC9022435 | biostudies-literature | 2022 Apr

REPOSITORIES: biostudies-literature

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The Intrinsic Fragility of the Liquid-Vapor Interface: A Stress Network Perspective.

Rahman Muhammad Rizwanur MR   Shen Li L   Ewen James P JP   Dini Daniele D   Smith E R ER  

Langmuir : the ACS journal of surfaces and colloids 20220406 15


The evolution of the liquid-vapor interface of a Lennard-Jones fluid is examined with molecular dynamics simulations using the intrinsic sampling method. Results suggest clear damping of the intrinsic profiles with increasing temperature. Investigating the surface stress distribution, we have identified a linear variation of the space-filling nature (fractal dimension) of the stress clusters at the intrinsic surface with increasing surface tension or, equivalently, with decreasing temperature. A  ...[more]

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