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弱群对聚电解质迁移率的影响。

Influence of weak groups on polyelectrolyte mobilities.

机构信息

Institute for Computational Physics, Universität Stuttgart, Stuttgart, Germany.

出版信息

Electrophoresis. 2019 Mar;40(5):799-809. doi: 10.1002/elps.201800346. Epub 2019 Jan 25.

DOI:10.1002/elps.201800346
PMID:30645004
Abstract

The ionization of dissociable groups in weak polyelectrolytes does not occur in a homogenous fashion. Monomer connectivity imposes constraints on the localization of the dissociated (charged) monomers that affect the local electric potential. As a result, the mean bare charge along a weak polyelectrolyte can vary depending on the proximity to topological features (e.g. presence of crosslinks or dangling ends). Using reaction-ensemble Monte-Carlo simulations we calculate the dissociation inhomogeneities for a few selected PE configurations, linear, rod-like, flexible four-arm star, and a star with stiff arms. An ensemble preaverage is used to obtain the annealed bare charge profile for these different polymer configurations. Using molecular dynamics simulations within a Lattice-Boltzman fluid, we investigate how the electrophoretic mobility is affected by the bare charge inhomogeneities arising from the annealed weak polyelectrolytes. Surprisingly, the mobility obtained for the situations corresponding to the predicted charge profile for annealed weak polyelectrolytes are not significantly different than the mobility obtained when all the monomers have an identical charge (under the constraint that the total polyelectrolyte bare charge is the same). This is also true for the stiff rod-like variants where conformational changes induced from the localization of the monomer charges are negligible. In salty solutions, we find that counterions are affected by the electric potential modulations induced by the topological features. Since the counterions crowd in regions where the electric potential caused by the dissociated monomers is highest, they wash-out the bare charge inhomogeneities and contribute to a more uniform effective backbone charge.

摘要

可离解基团在弱聚电解质中的电离不是均匀发生的。单体连接性对离解(带电)单体的局域化施加限制,从而影响局部电场。结果,弱聚电解质中裸露的平均电荷会根据与拓扑特征(例如交联或悬垂末端的存在)的接近程度而变化。我们使用反应-集合蒙特卡罗模拟计算了几种选定的 PE 构型(线性、棒状、灵活的四臂星型和刚性臂星型)的离解不均匀性。使用集合预平均来获得这些不同聚合物构型的退火裸露电荷分布。我们在晶格玻尔兹曼流体中进行分子动力学模拟,研究裸露电荷不均匀性如何影响由退火弱聚电解质引起的电泳迁移率。令人惊讶的是,对于对应于退火弱聚电解质的预测电荷分布的情况,所获得的迁移率与所有单体具有相同电荷(在总聚电解质裸露电荷相同的约束下)时获得的迁移率没有显著差异。对于刚性棒状变体也是如此,其中单体电荷局域化引起的构象变化可以忽略不计。在盐溶液中,我们发现反离子受到由拓扑特征引起的电场调制的影响。由于反离子在由离解单体引起的电场最高的区域聚集,它们消除了裸露电荷的不均匀性,并有助于更均匀的有效骨架电荷。

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