Tuning the critical solution temperature of polymers by copolymerization
Abstract
We study statistical copolymerization effects on the upper critical solution temperature (CST) of generic homopolymers by means of coarse-grained Langevin dynamics computer simulations and mean-field theory. Our systematic investigation reveals that the CST can change monotonically or non-monotonically with copolymerization, as observed in experimental studies, depending on the degree of non-additivity of the monomer (A-B) cross-interactions. The simulation findings are confirmed and qualitatively explained by a combination of a two-component Flory-de Gennes model for polymer collapse and a simple thermodynamic expansion approach. Our findings provide some rationale behind the effects of copolymerization and may be helpful for tuning CST behavior of polymers in soft material design.
Keywords
Cite
@article{arxiv.1510.02247,
title = {Tuning the critical solution temperature of polymers by copolymerization},
author = {Bernhard Schulz and Richard Chudoba and Jan Heyda and Joachim Dzubiella},
journal= {arXiv preprint arXiv:1510.02247},
year = {2015}
}
Comments
8 pages, 6 figures