Network-forming phase separation of oppositely charged polyelectrolytes forming coacervates in a solvent

Fuente: arXiv
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Main Authors: Yuan, Jiaxing, Tanaka, Hajime
Format: Preprint
Published: 2024
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author Yuan, Jiaxing
Tanaka, Hajime
author_facet Yuan, Jiaxing
Tanaka, Hajime
contents The formation of coacervates through phase separation of oppositely charged polyelectrolytes (PEs) is critical for understanding biological condensates and developing responsive materials. Traditionally, coacervates are viewed as spherical droplets with growth dynamics resembling liquid-liquid phase separation. However, our fluid particle dynamics simulations incorporating hydrodynamic and electrostatic interactions challenge this perspective. Here, we find that oppositely charged PEs form a percolated network even in semi-dilute solutions, coarsening with a unique growth law, $\ell \propto t^{1/2}$. This self-similarity, absent for neutral polymers in poor solvents, arises because PEs in good solvents exhibit weaker, longer-range attractions due to spatial charge inhomogeneity under global charge neutrality. This results in a lower density of the PEs-rich phase and reduced interfacial tension. Increased charge asymmetry further slows network coarsening. Additionally, coacervate droplets initially display irregular shapes due to weak interfacial tension, transitioning slowly to spherical forms. Our research provides new insights into coacervate morphology and coarsening dynamics.
format Preprint
id arxiv_https___arxiv_org_abs_2412_15753
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Network-forming phase separation of oppositely charged polyelectrolytes forming coacervates in a solvent
Yuan, Jiaxing
Tanaka, Hajime
Soft Condensed Matter
Biological Physics
Chemical Physics
The formation of coacervates through phase separation of oppositely charged polyelectrolytes (PEs) is critical for understanding biological condensates and developing responsive materials. Traditionally, coacervates are viewed as spherical droplets with growth dynamics resembling liquid-liquid phase separation. However, our fluid particle dynamics simulations incorporating hydrodynamic and electrostatic interactions challenge this perspective. Here, we find that oppositely charged PEs form a percolated network even in semi-dilute solutions, coarsening with a unique growth law, $\ell \propto t^{1/2}$. This self-similarity, absent for neutral polymers in poor solvents, arises because PEs in good solvents exhibit weaker, longer-range attractions due to spatial charge inhomogeneity under global charge neutrality. This results in a lower density of the PEs-rich phase and reduced interfacial tension. Increased charge asymmetry further slows network coarsening. Additionally, coacervate droplets initially display irregular shapes due to weak interfacial tension, transitioning slowly to spherical forms. Our research provides new insights into coacervate morphology and coarsening dynamics.
title Network-forming phase separation of oppositely charged polyelectrolytes forming coacervates in a solvent
topic Soft Condensed Matter
Biological Physics
Chemical Physics
url https://arxiv.org/abs/2412.15753