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首页> 外文期刊>Journal of Colloid and Interface Science >Interaction between like-charged particles at a liquid interface: Electrostatic repulsion vs. electrocapillary attraction
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Interaction between like-charged particles at a liquid interface: Electrostatic repulsion vs. electrocapillary attraction

机译:液体界面上带相同电荷的粒子之间的相互作用:静电排斥与毛细血管电吸引

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摘要

The electric field of charged particles, which are adsorbed at a liquid interface, induces interfacial deformations (capillary menisci). The overlap of such deformations gives rise to electrocapillary force of interaction between the particles. Our goal is to quantify this interaction on the basis of a force approach, which is different from the approaches (mostly based on energy calculations) used by other authors. The fact that the electric field of adsorbed particles has a dipolar asymptotics (due to the image-charge effect) is utilized to derive an analytical expression for the meniscus profile. The comparison of the calculated profile with experimental data indicates that the results based on the dipolar approximation agree excellently with the data, except some small deviations near the contact line. The effect of the interfacial deformation on the electrostatic pressure is also taken into account. The two-particle electrocapillary problem is solved in bipolar coordinates without using the superposition approximation. It turns out that for uniform distribution of the surface charges, the electrocapillary attraction is weaker than the electrostatic repulsion at interparticle distances at which the dipolar approximation is applicable, so that the net force is repulsive. This result is in agreement with the conclusions of other authors obtained by using different theoretical approaches and with available experimental data. The analytical expressions for the electrocapillary and electrodipping forces derived in the present article provide a simple and convenient way for estimation of these forces.
机译:在液体界面处吸附的带电粒子的电场会引起界面变形(毛细管半月板)。这种变形的重叠会引起颗粒之间相互作用的电毛细作用力。我们的目标是基于力方法来量化这种相互作用,这种方法不同于其他作者使用的方法(主要基于能量计算)。吸附颗粒的电场具有偶极渐近性(由于图像电荷效应)这一事实可用于得出弯月面轮廓的解析表达式。计算出的轮廓与实验数据的比较表明,基于偶极近似的结果与数据非常吻合,除了在接触线附近有一些小偏差。还考虑了界面变形对静电压力的影响。在不使用叠加逼近的情况下,在双极坐标系中解决了两粒子电毛细管问题。事实证明,为了使表面电荷均匀分布,在适用偶极近似的粒子间距离处,电毛细管吸引力要弱于静电排斥力,从而使净力具有排斥力。该结果与通过使用不同的理论方法和可用的实验数据获得的其他作者的结论一致。本文得出的电毛细管力和电浸力的解析表达式为估算这些力提供了一种简便的方法。

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