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Polarization and interactions of colloidal particles in ac electric fields

机译:交流电场中胶体粒子的极化和相互作用

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Micrometer-sized polystyrene particles form two-dimensional crystals in alternating current (ac) electric fields. The induced dipole-dipole interaction is the dominant force that drives this assembly. We report measurements of forces between colloidal particles in ac electric fields using optical tweezers and find good agreement with the point dipole model. The magnitude of the pair interaction forces depends strongly on the bulk solution conductivity and decreases as the ionic strength increases. The forces also decrease with increasing field frequency. The salt and frequency dependences are consistent with double layer polarization with a characteristic relaxation frequency omega(CD)similar to a(2)/D, where a is the particle radius and D is the ion diffusivity. This enables us to reinterpret the order-disorder transition reported for micrometer-sized polystyrene particles [Lumsdon , Langmuir 20, 2108 (2004)], including the dependence on particle size, frequency, and ionic strength. These results provide a rational framework for identifying assembly conditions of colloidal particles in ac fields over a wide range of parameters.
机译:微米级的聚苯乙烯颗粒在交流(ac)电场中形成二维晶体。诱导的偶极-偶极相互作用是驱动该组件的主导力。我们报告使用光镊测量交流电场中的胶体粒子之间的力,并发现与点偶极子模型很好的吻合。该对相互作用力的大小在很大程度上取决于本体溶液的电导率,并且随着离子强度的增加而降低。力也随着场频的增加而减小。盐和频率依赖性与双层极化一致,其特征弛豫频率为ω(CD),类似于a(2)/ D,其中a为粒子半径,D为离子扩散率。这使我们能够重新解释报道的微米级聚苯乙烯颗粒的有序-无序转变[Lumsdon,Langmuir 20,2108(2004)],包括对粒度,频率和离子强度的依赖性。这些结果提供了一个合理的框架,可用于在很宽的参数范围内确定交流场中胶体粒子的组装条件。

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