Partitioning Law of Polymer Chains into Flexible Polymer Networks

Fuente: arXiv
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Main Authors: Takarai, Haruki, Yasuda, Takashi, Sakumichi, Naoyuki, Sakai, Takamasa
Format: Preprint
Published: 2025
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author Takarai, Haruki
Yasuda, Takashi
Sakumichi, Naoyuki
Sakai, Takamasa
author_facet Takarai, Haruki
Yasuda, Takashi
Sakumichi, Naoyuki
Sakai, Takamasa
contents The equilibrium partitioning of linear polymer chains into flexible polymer networks is governed by intricate entropic constraints arising from configurational degrees of freedom of both chains and network, yet a quantitative understanding remains elusive. Using model hydrogels with precisely defined network structures, we experimentally reveal a universal law governing linear polymer partitioning into flexible polymer networks. We establish a novel label-free, contactless method to measure partition ratio, based on the increase in osmotic pressure induced by external polymer chains partitioning into the network. Moreover, we find a universal law in which the partition constant is solely determined by the squared ratio $(R_g / l_\mathrm{cycle})^2$, where $R_g$ is the gyration radius of the polymer chain and $l_\mathrm{cycle}$ is the characteristic mesh size of the network, as defined by the cycle length.
format Preprint
id arxiv_https___arxiv_org_abs_2505_05254
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Partitioning Law of Polymer Chains into Flexible Polymer Networks
Takarai, Haruki
Yasuda, Takashi
Sakumichi, Naoyuki
Sakai, Takamasa
Soft Condensed Matter
Materials Science
Statistical Mechanics
Biological Physics
Chemical Physics
The equilibrium partitioning of linear polymer chains into flexible polymer networks is governed by intricate entropic constraints arising from configurational degrees of freedom of both chains and network, yet a quantitative understanding remains elusive. Using model hydrogels with precisely defined network structures, we experimentally reveal a universal law governing linear polymer partitioning into flexible polymer networks. We establish a novel label-free, contactless method to measure partition ratio, based on the increase in osmotic pressure induced by external polymer chains partitioning into the network. Moreover, we find a universal law in which the partition constant is solely determined by the squared ratio $(R_g / l_\mathrm{cycle})^2$, where $R_g$ is the gyration radius of the polymer chain and $l_\mathrm{cycle}$ is the characteristic mesh size of the network, as defined by the cycle length.
title Partitioning Law of Polymer Chains into Flexible Polymer Networks
topic Soft Condensed Matter
Materials Science
Statistical Mechanics
Biological Physics
Chemical Physics
url https://arxiv.org/abs/2505.05254