Chain conformations in adsorbed layer during polymer capillary imbibition

Fuente: arXiv
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Main Authors: Liang, Tao, Peng, Li, Huang, Xianbo, Zhou, Jiajia
Format: Preprint
Published: 2026
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author Liang, Tao
Peng, Li
Huang, Xianbo
Zhou, Jiajia
author_facet Liang, Tao
Peng, Li
Huang, Xianbo
Zhou, Jiajia
contents We conducted molecular dynamics simulations to investigate chain conformations in adsorbed layers during polymer capillary imbibition. While the imbibition length adheres to the classical Lucas-Washburn equation, a notable deviation in mobile bead density emerges under strong confinement, consistent with \emph{in situ} dielectric spectroscopy experiments. The proportion of loop structures within adsorbed layers progressively increases during capillary infiltration, attributed to the relaxation of initially stretched chains toward equilibrium configurations. Furthermore, systematic analysis revealed that chain relaxation dynamics exhibit length-dependent retardation, especially under high confinement. The characteristic desorption time demonstrates chain-length dependence in quantitative agreement with scaling predictions.
format Preprint
id arxiv_https___arxiv_org_abs_2605_25714
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Chain conformations in adsorbed layer during polymer capillary imbibition
Liang, Tao
Peng, Li
Huang, Xianbo
Zhou, Jiajia
Soft Condensed Matter
We conducted molecular dynamics simulations to investigate chain conformations in adsorbed layers during polymer capillary imbibition. While the imbibition length adheres to the classical Lucas-Washburn equation, a notable deviation in mobile bead density emerges under strong confinement, consistent with \emph{in situ} dielectric spectroscopy experiments. The proportion of loop structures within adsorbed layers progressively increases during capillary infiltration, attributed to the relaxation of initially stretched chains toward equilibrium configurations. Furthermore, systematic analysis revealed that chain relaxation dynamics exhibit length-dependent retardation, especially under high confinement. The characteristic desorption time demonstrates chain-length dependence in quantitative agreement with scaling predictions.
title Chain conformations in adsorbed layer during polymer capillary imbibition
topic Soft Condensed Matter
url https://arxiv.org/abs/2605.25714