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Structural effects of the solvent composition in colloidal liquids

机译:胶体液体中溶剂成分的结构效应

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This paper is concerned with the microstructure observed in colloidal dispersions of charged polymeric particles and their interaction potential at very low ionic strength. Both aspects are probed with the aid of new experimental data for nonaqueous media. The structure factor of ordered dispersions (with methanol-water and ethanol-water solvent mixtures) was determined using static light scattering. A different behavior (in the studied range of molar fraction) depending on the alcohol type is found. These results are analyzed assuming a Yukawa potential and applying integral equation theories (the Ornstein-Zernike equation and the HNC closure). The obtained effective charge is almost constant for methanol-water mixtures, whereas a decrease with the alcohol molar fraction is observed for ethanol-water. In order to account for these effects, a charge renormalization procedure is applied and discussed. The surface charge turns out to be an unsuitable input parameter for such an approach.
机译:本文关注带电聚合物颗粒的胶态分散体中观察到的微观结构及其在非常低的离子强度下的相互作用势。借助新的非水介质实验数据对这两个方面进行了探讨。使用静态光散射确定有序分散体(与甲醇-水和乙醇-水溶剂的混合物)的结构因子。发现根据醇类型的不同行为(在研究的摩尔分数范围内)。假设汤川势并应用积分方程理论(Ornstein-Zernike方程和HNC闭包)对这些结果进行了分析。对于甲醇-水混合物,获得的有效电荷几乎恒定,而对于乙醇-水,则观察到醇摩尔分数的降低。为了解决这些影响,应用了电荷重整化过程并进行了讨论。对于这种方法,表面电荷被证明是不合适的输入参数。

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