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多价抗衡离子诱导的大离子凝聚动力学

Kinetics of macroion coagulation induced by multivalent counterions.

作者信息

Nguyen T T, Shklovskii B I

机构信息

Theoretical Physics Institute, University of Minnesota, 116 Church Street Southeast, Minneapolis, Minnesota 55455, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Mar;65(3 Pt 1):031409. doi: 10.1103/PhysRevE.65.031409. Epub 2002 Mar 5.

Abstract

Due to the strong correlations between multivalent counterions condensed on a macroion, the net macroion charge changes sign at some critical counterion concentration. This effect is known as the charge inversion. Near this critical concentration the macroion net charge is small. Therefore, short range attractive forces between macroions dominate Coulomb repulsion and lead to their coagulation. The kinetics of macroion coagulation in this range of counterion concentrations is studied. We calculate the Coulomb barrier between two approaching like charged macroions at a given counterion concentration. Two different macroion shapes (spherical and rodlike) are considered. A new "self-regulated" regime of coagulation is found. As the size of aggregates increases, their charge and Coulomb barrier also grow and diminish the sticking probability of aggregates. This leads to a slow, logarithmic increase of the aggregate size with time.

摘要

由于凝聚在大离子上的多价抗衡离子之间存在强相关性,在某个临界抗衡离子浓度下,大离子的净电荷会改变符号。这种效应被称为电荷反转。在该临界浓度附近,大离子的净电荷很小。因此,大离子之间的短程吸引力主导了库仑排斥力,并导致它们凝聚。研究了在该抗衡离子浓度范围内大离子凝聚的动力学。我们计算了在给定抗衡离子浓度下两个接近的同种电荷大离子之间的库仑势垒。考虑了两种不同的大离子形状(球形和棒状)。发现了一种新的“自我调节”凝聚机制。随着聚集体尺寸的增加,它们的电荷和库仑势垒也会增大,从而降低聚集体的黏附概率。这导致聚集体尺寸随时间缓慢地呈对数增长。

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