Polymer Program, Institute of Materials Science and Department of Physics, University of Connecticut, Storrs, Connecticut 06269, USA.
J Phys Chem B. 2010 Jul 29;114(29):9391-9. doi: 10.1021/jp101978k.
Hydrophobic polyelectrolytes are known to form necklace-like structures of dense beads connected by strings of monomers. This structure appears as a result of optimization of the electrostatic and short-range interactions. To elucidate the effect of counterion condensation and solvent on polyelectrolyte conformations, we performed two sets of molecular dynamics simulations of model poly(styrene)-co-styrene sodium sulfonate (NaPSS) chains with the degree of polymerization N = 16-64 and fraction of charged monomers f = 0.25-1 in aqueous solutions: (1) water molecules were considered explicitly using the TIP3P-PME model and (2) water molecules were modeled as a dielectric continuum with the dielectric constant 77.73. Our simulations showed that with increasing fraction of sulfonated groups f a polystyrene sulfonate chain adopts an elongated conformation. There is a transition between collapsed and elongated states which is manifested in the change of the scaling dependence of the chain size on the degree of polymerization. The effect of the water-ion interactions on counterion condensation was analyzed by comparing the radial distribution functions between the sulfonated groups and counterions for chains with different f values. In the case of the collapsed NaPSS chains, it was found that ionized groups are located at the globular surface.
疏水性聚电解质通常形成由紧密连接的珠链组成的项链状结构,这些珠链由单体链连接而成。这种结构是静电和短程相互作用优化的结果。为了阐明抗衡离子凝聚和溶剂对聚电解质构象的影响,我们对具有聚合度 N = 16-64 和带电单体分数 f = 0.25-1 的模型聚苯乙烯-共苯乙烯磺酸钠(NaPSS)链进行了两组分子动力学模拟:(1)使用 TIP3P-PME 模型显式考虑水分子,(2)将水分子建模为具有介电常数 77.73 的介电连续体。我们的模拟表明,随着磺化基团分数 f 的增加,聚苯乙烯磺酸盐链采用伸长构象。在收缩和伸长状态之间存在转变,这表现在链尺寸对聚合度的标度依赖性的变化上。通过比较不同 f 值的链的磺酸盐基团和抗衡离子之间的径向分布函数,分析了水-离子相互作用对抗衡离子凝聚的影响。在 NaPSS 链收缩的情况下,发现离子化基团位于球状表面。