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短链聚电解质溶液的黏度。

The viscosity of short polyelectrolyte solutions.

机构信息

Instituto de Física da Universidade Federal do Rio de Janeiro, Caixa Postal 68528 21941-972, Rio de Janeiro, Brazil.

出版信息

Soft Matter. 2014 Mar 21;10(11):1714-22. doi: 10.1039/c3sm52630e.

Abstract

We consider the viscosity of solutions of highly charged short polyelectrolytes. Our system is a poly(styrene-maleic acid) copolymer solution (SMA) with various added salt concentrations in dilute and semidilute regimes. The SMA solutions show some particular features: (i) variations of the specific viscosity measured for different values of concentration and ionic strength can be rescaled on two universal curves when plotted as a function of the effective volume fraction; (ii) the reduced viscosity is proportional to the Debye length. In order to describe the viscosity of such a system we model the motion of the charged rods considering a simpler system: we replace each charged rod and its corresponding charge cloud by an effective neutral rod. This modified system is yet below the concentrated regime and, at most, steric interactions are left. In the semidilute regime, we model the rescaled rods moving under a mean field potential and obtain a dynamical equation for the orientational tensor, considered small, and the viscosity is derived from it. Within our mean field approach, the effects due to the rod Brownian motion and due to the potential cancel each other and the behavior of the viscosity is explained in terms of the effective volume fraction only. Our predictions are in good qualitative agreement with the experimental results over a wide range of parameters, and suggest a method for obtaining the rotational diffusion constant in the semidilute regime.

摘要

我们研究了高电荷短高分子电解质溶液的黏度。我们的体系是聚(苯乙烯-马来酸)共聚物溶液(SMA),在稀相和半稀相区有不同的外加盐浓度。SMA 溶液表现出一些特殊的性质:(i)当以有效体积分数为函数绘制时,不同浓度和离子强度下测量的比浓黏度的变化可以在两个通用曲线上进行缩放;(ii)比浓黏度与德拜长度成正比。为了描述这种体系的黏度,我们通过考虑一个更简单的体系来模拟带电棒的运动:我们用一个有效的中性棒来替代每个带电棒及其相应的电荷云。这个修改后的体系仍处于低浓度区,而且最多只剩下了位阻相互作用。在半稀相区,我们对经过平均场势移动的缩放棒进行建模,并得到一个用于取向张量的动力学方程,我们假设该张量很小,并从该方程中推导出黏度。在我们的平均场方法中,棒布朗运动和势的影响相互抵消,黏度的行为仅用有效体积分数来解释。我们的预测在广泛的参数范围内与实验结果有很好的定性一致性,并提出了一种在半稀相区获得旋转扩散常数的方法。

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