Sayar Mehmet, Holm Christian
College of Engineering, Koc University, Istanbul, Turkey.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Sep;82(3 Pt 1):031901. doi: 10.1103/PhysRevE.82.031901. Epub 2010 Sep 2.
We present the results of molecular-dynamics simulations on the salt concentration dependence of the formation of polyelectrolyte bundles in thermodynamic equilibrium. Extending our results on salt-free systems we investigate here deficiency or excess of trivalent counterions in solution. Our results reveal that the trivalent counterion concentration significantly alters the bundle size and size distribution. The onset of bundle formation takes place at earlier Bjerrum length values with increasing trivalent counterion concentration. For the cases of 80%, 95%, and 100% charge compensation via trivalent counterions, the net charge of the bundles decreases with increasing size. We suggest that competition among two different mechanisms, counterion condensation and merger of bundles, leads to a nonmonotonic change in line-charge density with increasing Bjerrum length. The investigated case of having an abundance of trivalent counterions by 200% prohibits such a behavior. In this case, we find that the difference in effective line-charge density of different size bundles diminishes. In fact, the system displays an isoelectric point, where all bundles become charge neutral.
我们展示了关于热力学平衡中聚电解质束形成的盐浓度依赖性的分子动力学模拟结果。在此,基于我们在无盐体系中的研究结果,我们考察了溶液中三价抗衡离子的不足或过量情况。我们的结果表明,三价抗衡离子浓度显著改变了束的大小和尺寸分布。随着三价抗衡离子浓度的增加,束形成的起始点在更早的 Bjerrum 长度值处出现。对于通过三价抗衡离子实现 80%、95%和 100%电荷补偿的情况,束的净电荷随尺寸增大而减小。我们认为,两种不同机制(抗衡离子凝聚和束的合并)之间的竞争导致线电荷密度随 Bjerrum 长度增加呈现非单调变化。所研究的三价抗衡离子过量 200%的情况则禁止了这种行为。在这种情况下,我们发现不同尺寸束的有效线电荷密度差异减小。实际上,该体系呈现出一个等电点,此时所有束都变为电荷中性。