Self-consistent mode-coupling theory for the viscosity of rod-like polyelectrolyte solutions
Abstract
A self-consistent mode-coupling theory is presented for the viscosity of solutions of charged rod-like polymers. The static structure factor used in the theory is obtained from polymer integral equation theory; the Debye-H\"{u}ckel approximation is inadequate even at low concentrations. The theory predicts a non-monotonic dependence of the reduced excess viscosity, , on concentration from the behaviour of the static structure factor in polyelectrolyte solutions. The theory predicts that the peak in occurs at concentrations slightly lower than the overlap threshold concentration, . The peak height increases dramatically with increasing molecular weight and decreases with increased concentrations of added salt. The position of the peak, as a function of concentration divided by is independent of salt concentration or molecular weight. The predictions can be tested experimentally.
Cite
@article{arxiv.cond-mat/0405326,
title = {Self-consistent mode-coupling theory for the viscosity of rod-like polyelectrolyte solutions},
author = {Kunimasa Miyazaki and Biman Bagchi and Arun Yethiraj},
journal= {arXiv preprint arXiv:cond-mat/0405326},
year = {2009}
}
Comments
9 pages, 9 figures (2 figures added in the revise version)