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在强滑移水表面上,油滴的场致异常扩展、振荡、喷出、旋转和破裂。

Field induced anomalous spreading, oscillation, ejection, spinning, and breaking of oil droplets on a strongly slipping water surface.

机构信息

Department of Chemical Engineering, Indian Institute of Technology Guwahati, Assam 781039, India.

Department of Mechanical Engineering, Indian Institute of Technology Guwahati, Assam 781039, India.

出版信息

Faraday Discuss. 2017 Jul 1;199:115-128. doi: 10.1039/c6fd00233a. Epub 2017 Apr 19.

Abstract

Application of an electric field on an oil droplet floating on the surface of a deionized water bath showed interesting motions such as spreading, oscillation, and ejection. The electric field was generated by connecting a pointed platinum cathode at the top of the oil droplet and a copper anode coated with polymer at the bottom of the water layer. The experimental setup mimicked a conventional electrowetting setup with the exception that the oil was spread on a soft and deformable water isolator. While at relatively lower field intensities we observed spreading of the droplet, at intermediate field intensities the droplet oscillated around the platinum cathode, before ejecting out at a speed as high as ∼5 body lengths per second at even stronger field intensities. The experiments suggested that when the electric field was ramped up abruptly to a particular voltage, any of the spreading, oscillation, or ejection motions of the droplet could be engendered at lower, intermediate and higher field intensities, respectively. However, when the field was ramped up progressively by increasing by a definite amount of voltage per unit time, all three aforementioned motions could be generated simultaneously with the increase in the field intensity. Interestingly, when the aforementioned setup was placed on a magnet, the droplet showed a rotational motion under the influence of the Lorentz force, which was generated because of the coupling of the weak leakage current with the externally applied magnetic field. The spreading, oscillation, ejection, and rotation of the droplet were found to be functions of the oil-water interfacial tension, viscosity, and size of the oil droplet. We developed simple theoretical models to explain the experimental results obtained. Importantly, rotating at a higher speed broke the droplet into a number of smaller ones, owing to the combined influence of the spreading due to the centripetal force and the shear at the oil-water interface. While the oscillatory and rotational motions of the incompressible droplet could be employed as stirrers or impellers inside microfluidic devices for mixing applications, the droplet ejection could be employed for futuristic applications such as payload transport or drug delivery.

摘要

在去离子水水浴表面漂浮的油滴上施加电场会显示出有趣的运动,例如扩展、振荡和喷出。电场是通过将尖端铂阴极连接到油滴的顶部和涂有聚合物的铜阳极连接到底部的水层来产生的。实验装置模仿了传统的电润湿装置,除了油被铺展在柔软且可变形的水隔离器上。虽然在较低的场强下我们观察到了液滴的扩展,但在中间场强下,液滴在铂阴极周围振荡,然后在更强的场强下以高达约 5 个体长/秒的速度喷出。实验表明,当电场突然升压到特定电压时,在较低、中等和较高场强下,分别可以引发液滴的扩展、振荡或喷出运动。然而,当电场以单位时间增加一定量的电压逐渐升压时,所有上述三种运动都可以随着场强的增加而同时产生。有趣的是,当将上述装置放置在磁铁上时,液滴在洛伦兹力的影响下会发生旋转运动,这是由于弱漏电流与外加磁场的耦合产生的。液滴的扩展、振荡、喷出和旋转被发现是油-水界面张力、粘度和油滴大小的函数。我们开发了简单的理论模型来解释实验结果。重要的是,由于向心力和油-水界面的剪切力的共同作用,高速旋转会将液滴分裂成多个较小的液滴。虽然不可压缩液滴的振荡和旋转运动可以用作微流控设备中的搅拌器或叶轮进行混合应用,但液滴的喷出可以用于未来的应用,如有效载荷运输或药物输送。

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