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Dynamic double layer effects on ac-induced dipoles of dielectric nanocolloids

机译:动态双层对介电纳米胶体的交流感应偶极子的影响

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摘要

Normal and tangential surface ionic currents around low-permittivity nanocolloids with surface charges are shown to produce three different conductive mechanisms for ac-induced dipoles, all involving dynamic space charge accumulation at the double layer∕bulk interface with a conductivity jump. However, the distinct capacitor dimensions and diffusive contributions produce three disparate crossover frequencies at which the induced dipole reverses direction relative to the bulk field. A highly conducting collapsed diffuse layer, with bulk ion mobility, renders the particle conductive and produces an ionic strength independent crossover frequency for weak electrolytes. A precipitous drop in crossover frequency occurs at high ionic strengths when charging occurs only at the poles through field focusing around the insulated colloid. A peculiar maximum in crossover frequency exists between these two asymptotes for colloids smaller than a critical size when normal charging of the diffuse layer occurs over the entire surface. The crossover frequency data for latex nanocolloids of various sizes in different electrolytes of wide ranging ionic strengths are collapsed by explicit theoretical predictions without empirical parameters.
机译:带有表面电荷的低介电常数纳米胶体周围的法向和切向表面离子流显示出可产生三种不同的交流感应偶极子导电机理,所有这些都涉及在双层体界面上的动态空间电荷积累,并具有电导率跃变。但是,不同的电容器尺寸和扩散贡献会产生三个不同的分频点,在这些分频点处,感应偶极子相对于体场的方向相反。具有整体离子迁移率的高传导性塌缩扩散层使粒子具有传导性,并为弱电解质产生与离子强度无关的穿越频率。当仅通过围绕绝缘胶体聚焦的电场在两极上发生充电时,在高离子强度下会发生交叉频率的急剧下降。当在整个表面上正常发生扩散层的带电时,对于小于临界尺寸的胶体,这两个渐近线之间存在一个特殊的交叉频率最大值。在没有经验参数的情况下,通过明确的理论预测无法获得各种离子强度范围不同的电解质中各种尺寸的胶乳纳米胶体的交换频率数据。

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