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Electrostatic origins of polyelectrolyte adsorption: Theory and Monte Carlo simulations

机译:聚电解质吸附的静电起源:理论和蒙特卡洛模拟

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Electrostatic interactions may promote or abate polyelectrolyte adsorption onto a charged surface depending on a number of interrelated factors including the surface and polymer charge densities, the salt concentration, and nonelectrostatic interactions such as van der Waals and hydrophobic forces. Even without the nonelectrostatic interactions, the electrostatic behavior of polyelectrolyte systems is often counterintuitive and cannot be explained with conventional theories of polymers or simple electrolytes. In this work, a nonlocal density functional theory (NLDFT) and Monte Carlo simulations are used together to investigate polyelectrolyte adsorption at both oppositely charged and like-charged surfaces (one due to the direct electrostatic attraction and the other due to counterion correlations). The simulation results provide a stringent test of the numerical performance of the NLDFT, in particular for systems containing multivalent counterions where electrostatic correlations are important. A systematic study of the effects of ion valence, salt concentration, and polyion chain length reveals that polyelectrolyte attraction to an oppositely charged surface is nearly a neutralization effect, little influenced by the polyion chain length and counterion valence. Neither the surface mean electrostatic potential nor the integrated local charge density shows no significant sign of charge inversion. Both theory and simulation predict polyelectrolyte adsorption onto a like-charged surface when the system contains multivalent counterions. In that case, the surface excess is sensitive to the surface charge density, the counterion valence, and the salt concentration. The surface mean electrostatic potential shows a clear evidence of charge inversion when two layers of like charges are mediated by multivalent counterions. The theoretical investigations indicate that most likely, the electrostatic correlation mediated by multivalent counterions is responsible for the layer-by-layer assembly of oppositely charged polyelectrolyte films.
机译:静电相互作用可促进或减少聚电解质在带电表面上的吸附,具体取决于许多相互关联的因素,包括表面和聚合物的电荷密度,盐浓度以及非静电相互作用(例如范德华力和疏水力)。即使没有非静电相互作用,聚电解质体系的静电行为也常常是违反直觉的,并且不能用聚合物或简单电解质的常规理论来解释。在这项工作中,非局部密度泛函理论(NLDFT)和蒙特卡罗模拟一起用于研究聚电解质在带相反电荷和带相同电荷的表面上的吸附(一个是由于直接静电吸引,另一个是由于抗衡离子相关性)。仿真结果为NLDFT的数值性能提供了严格的测试,特别是对于包含多价抗衡离子的系统,其中静电相关性很重要。对离子价,盐浓度和聚离子链长度的影响的系统研究表明,聚电解质吸引到带相反电荷的表面几乎是一种中和作用,几乎不受聚离子链长度和抗衡离子价的影响。表面平均静电势和积分局部电荷密度均未显示出明显的电荷反转迹象。理论和模拟都预测当系统包含多价抗衡离子时,聚电解质会吸附到带电荷的表面上。在那种情况下,表面过量对表面电荷密度,抗衡离子价和盐浓度敏感。当两层类似的电荷由多价抗衡离子介导时,表面平均静电势显示出电荷反转的清晰证据。理论研究表明,由多价抗衡离子介导的静电相关最有可能导致带相反电荷的聚电解质薄膜的逐层组装。

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