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Association in electrolyte solutions: Rodlike polyelectrolytes in multivalent salts

机译:电解质溶液中的缔合:多价盐中的棒状聚电解质

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We describe a new approach to determine the degree of association between ionic components in complex electrolyte solutions. We use the electrostatic contribution to the free energy that arises from the exact separation into long and short ranged parts of the correlation functions in a dilute electrolyte solution to determine the effective charge of the various ionic components. We describe the short-ranged direct correlations between different ionic components with delta functions whose strength give the direct association between them. The association is determined self-consistently by minimizing the resulting free energy, which contains long and short range correlations contributions. Association between like charges is mediated by direct association between opposite charges. We analyze rodlike polyelectorlyes in monovalent and/or multivalent salts. We find a broad minimum in the absolute value of effective rod charge at long distances as a function of monovalent salt concentration. This minimum is due to the association of the salt ions among themselves. We also determine the number of multivalent and monovalent ions associated to the rods. The degree of association is a function of the smallest length scale, which determines the electrostatic potential between ionic species at contact.
机译:我们描述了一种确定复杂电解质溶液中离子组分之间缔合程度的新方法。我们使用在稀电解质溶液中精确分离为相关函数的长范围和短范围部分而产生的对自由能的静电贡献来确定各种离子组分的有效电荷。我们用delta函数描述了不同离子组分之间的短程直接相关性,这些函数的强度给出了它们之间的直接关联。通过最小化所产生的自由能来自洽确定关联,该自由能包含长程和短程相关性贡献。相似电荷之间的关联由相反电荷之间的直接关联来介导。我们分析了单价和/或多价盐中的棒状多电沉积物。我们发现,长距离有效杆电荷的绝对值中的最小值与一价盐浓度有关。该最小值是由于盐离子之间的缔合。我们还确定了与棒相关的多价和单价离子的数量。缔合度是最小长度标度的函数,最小长度标度确定了接触的离子物质之间的静电势。

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