Perpendicular separations of a binary mixture under van der Waals confinement

Fuente: arXiv
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Main Author: Lin, Kui
Format: Preprint
Published: 2023
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author Lin, Kui
author_facet Lin, Kui
contents We investigated the dynamics of a binary mixture confined within van der Waals (vdW) walls using molecular dynamics simulations. We discovered a novel phenomenon named perpendicular separations of two phases (PSTP). In the initial stage, central water molecules diffused, subsequently condensing symmetrically within the confinement's mid-plane. In the later stage, as water droplets nucleate and grow, the resin separates perpendicularly into two films due to the action of bubblers and vdW walls, resulting in a hollow nanochannel. The mechanisms and conditions underlying PSTS are discussed. The results indicate that the concentration (C) of resin in the middle region is linearly decreased with temporal power. We propose a new mechanism for stabilizing nanochannels and films: dynamic "soft pillars" that prevent Rayleigh-like instability. Our findings could shed light on the manufacture of nanofilms and organic nanochannels, which could help advance bio-detection and energy fields.
format Preprint
id arxiv_https___arxiv_org_abs_2307_10939
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Perpendicular separations of a binary mixture under van der Waals confinement
Lin, Kui
Soft Condensed Matter
Materials Science
Fluid Dynamics
We investigated the dynamics of a binary mixture confined within van der Waals (vdW) walls using molecular dynamics simulations. We discovered a novel phenomenon named perpendicular separations of two phases (PSTP). In the initial stage, central water molecules diffused, subsequently condensing symmetrically within the confinement's mid-plane. In the later stage, as water droplets nucleate and grow, the resin separates perpendicularly into two films due to the action of bubblers and vdW walls, resulting in a hollow nanochannel. The mechanisms and conditions underlying PSTS are discussed. The results indicate that the concentration (C) of resin in the middle region is linearly decreased with temporal power. We propose a new mechanism for stabilizing nanochannels and films: dynamic "soft pillars" that prevent Rayleigh-like instability. Our findings could shed light on the manufacture of nanofilms and organic nanochannels, which could help advance bio-detection and energy fields.
title Perpendicular separations of a binary mixture under van der Waals confinement
topic Soft Condensed Matter
Materials Science
Fluid Dynamics
url https://arxiv.org/abs/2307.10939