Dielectrophoresis of reverse phase emulsions.

N Flores-Rodriguez, Z Bryning, G H Markx
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引用次数: 2

Abstract

Reverse miniemulsions, emulsions of droplets of size 200 nm-1 microm of a polar liquid dispersed in an apolar continuous liquid phase, exhibit strong electrokinetic responses in low-frequency electric fields. The electrokinetic behaviour of a reverse miniemulsion, previously developed for use as electronic paper, has been investigated under static and flow conditions, in uniform and non-uniform electric fields. Results reveal that when using frequencies lower than 10 Hz strong aggregation of the droplets occurs. In uniform electric fields, under static conditions, droplets reversibly aggregate into honeycomb-like or irregular aggregates. Under flow conditions, droplets aggregate into approximately equidistant streams. In non-uniform electric fields the droplets reversibly aggregate in high-field regions, and can be guided along regions of high field strength in a flow. The potential of the technique for the formation of structured materials is discussed.

反相乳剂的双向电泳。
反向微乳液,即粒径为200 nm-1微米的极性液体液滴分散在极性连续液相中的乳液,在低频电场中表现出强烈的电动力学响应。在静态和流动条件下,在均匀和非均匀电场下,研究了一种反向微乳液的电动力学行为,这种乳液以前被开发用于电子纸。结果表明,当使用频率低于10 Hz时,液滴会发生强烈的聚集。在均匀电场中,在静态条件下,液滴可逆地聚集成蜂窝状或不规则的聚集体。在流动条件下,液滴聚集成近似等距的流。在非均匀电场中,液滴在高场区可逆聚集,并在流动中沿高场强区引导。讨论了该技术在结构材料形成方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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