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Density functional theory for the nonspecific binding of salt to polyelectrolytes: thermodynamic properties.

机译:盐与聚电解质非特异性结合的密度泛函理论:热力学性质。

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摘要

The thermodynamics of the nonspecific binding of salt to a polyelectrolyte molecule is studied using a density functional approach. The polyelectrolyte molecule is modeled as an infinite, inflexible, and impenetrable charged cylinder and the counterions and co-ions are modeled as charged hard spheres of equal diameter. The density functional theory is based on a hybrid approach where the hard-sphere contribution to the one-particle correlation function is evaluated nonperturbatively and the ionic contribution to the one-particle correlation function is evaluated perturbatively. The advantage of the approach is that analytical expressions are available for all the correlation functions. The calculated single ion preferential interaction coefficients, excess free energy, and activity coefficients show a nonmonotonic variation as a function of polyion charge in the presence of divalent ions. These properties display considerable departure from the predictions of the nonlinear Poisson-Boltzmann (NLPB) equation, with qualitative differences in some cases, which may be attributed to correlation effects neglected in the NLPB theory.
机译:使用密度泛函方法研究了盐与聚电解质分子的非特异性结合的热力学。聚电解质分子被建模为无限大,不可弯曲且不可穿透的带电圆柱体,而抗衡离子和共离子被建模为等直径的带电硬球。密度泛函理论基于一种混合方法,其中硬球对单粒子相关函数的贡献是非扰动性地评估,而离子对单粒子相关函数的贡献是非扰动性的。该方法的优点是解析表达式可用于所有相关函数。在存在二价离子的情况下,计算得出的单离子优先相互作用系数,过量自由能和活度系数显示出非单调变化,是聚离子电荷的函数。这些性质显示出与非线性Poisson-Boltzmann(NLPB)方程的预测有很大的出入,在某些情况下有质的差异,这可能归因于NLPB理论中忽略的相关效应。

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