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Electrostatic interactions between charged dielectric particles in an electrolyte solution

机译:电解质溶液中带电介电颗粒之间的静电相互作用

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Theory is developed to address a significant problem of how two charged dielectric particles interact in the presence of a polarizable medium that is a dilute solution of a strong electrolyte. The electrostatic force is defined by characteristic parameters for the interacting particles (charge, radius, and dielectric constant) and for the medium (permittivity and Debye length), and is expressed in the form of a converging infinite series. The limiting case of weak screening and large inter-particle separation is considered, which corresponds to small (macro) ions that carry constant charge. The theory yields a solution in the limit of monopole and dipole terms that agrees exactly with existing analytical expressions, which are generally used to describe ion-ion and ion-molecular interactions in a medium. Results from the theory are compared with DLVO theory and with experimental measurements for the electrostatic force between two PMMA particles contained in a nonpolar solvent (hexadecane) with an added charge control agent. Published by AIP Publishing.
机译:发展理论以解决两个带电介电颗粒在稀释电解质的稀释溶液的存在下有效图像的重要问题。静电力由用于相互作用颗粒(电荷,半径和介电常数)和介质(介电常数和脱义)的特征参数来限定,并且以趋同无限系列的形式表示。考虑筛选弱筛选和大颗粒间分离的限制情况,其对应于携带恒定电荷的小(宏)离子。该理论在单孔和偶极子术语的极限产生了溶液,其与现有的分析表达完全一致,其通常用于描述培养基中的离子离子和离子分子相互作用。该理论的结果与DLVO理论进行比较,并且在具有添加电荷控制剂的非极性溶剂(十六甲烷)中包含的两个PMMA颗粒之间的静电力的实验测量。通过AIP发布发布。

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