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首页> 外文期刊>Journal of Colloid and Interface Science >Forces acting on dielectric colloidal spheres at a wateronpolar-fluid interface in an external electric field. 1. Uncharged particles
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Forces acting on dielectric colloidal spheres at a wateronpolar-fluid interface in an external electric field. 1. Uncharged particles

机译:在外部电场中,在水/非极性流体界面处作用于介电胶体球上的力。 1.不带电粒子

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摘要

Here, we calculate the electric forces acting on uncharged dielectric colloidal particles, which are attached to the interface between a nonpolar fluid (air, oil) and water, in the presence of an applied uniform external electric field directed normal to the interface. The uncharged particle becomes a source of dipolar electric field because it is polarized by the external field. Our goal is to calculate the normal (electrodipping) force acting on each separate particle, and the force of interaction between two identical particles. An exact analytical solution is obtained by solving the Laplace equation in toroidal coordinates and by separating the variables using the Mehler-Fock integral transform. The results show that the dependence of the normal force on particle contact angle is non-monotonic, with a maximum and a minimum. This force can be directed upward or downward depending on the particle contact angle and dielectric constant. An analytical asymptotic expression is derived for the force of interaction between two floating particles in external field. The magnitude of the latter force depends strongly on the particle contact angle α. At a certain value of α, the leading dipolar term becomes zero, and the interaction force is determined by the short-range octupolar term. Then, the attractive lateral capillary forces and van der Waals forces can overcome the electrostatic repulsion and can induce two-dimensional coagulation of the particles at the interface. The effects of the external electric field could find applications for control of the distances between particles in non-densely packed interfacial colloid crystals used in lithographic masks for the production of antireflective coatings, microlens arrays, etc. The case of charged particles in external field is considered in the second part of this study.
机译:在这里,我们计算作用在不带电的介电胶体粒子上的电场力,该粒子附着在非极性流体(空气,油)和水之间的界面上,并且存在垂直于界面的均匀外部电场。不带电粒子成为偶极电场的源头,因为它被外部电场极化。我们的目标是计算作用在每个单独粒子上的法向(电浸)力,以及两个相同粒子之间的相互作用力。通过在环形坐标系中求解拉普拉斯方程并使用Mehler-Fock积分变换分离变量,可以获得精确的解析解。结果表明,法向力对粒子接触角的依赖性是非单调的,具有最大值和最小值。该力可以根据颗粒接触角和介电常数而向上或向下。推导了两个浮点在外部场之间相互作用的解析渐近表达式。后一力的大小在很大程度上取决于颗粒接触角α。在一定的α值时,前导偶极子项变为零,并且相互作用力由短程八极子项确定。然后,有吸引力的侧向毛细作用力和范德华力可以克服静电排斥力,并在界面处引起颗粒的二维凝结。外部电场的影响可用于控制用于生产抗反射涂层,微透镜阵列等的光刻掩模中使用的非密集堆积的界面胶体晶体中颗粒之间的距离的应用。在本研究的第二部分中进行了考虑。

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