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调制接触角滞后以引导液滴沿均匀表面行进。

Modulating contact angle hysteresis to direct fluid droplets along a homogenous surface.

机构信息

Chemical and Biomolecular Engineering Department, Johns Hopkins University, 3400 North Charles Street, Baltimore, Maryland 21218, United States.

出版信息

ACS Appl Mater Interfaces. 2012 Feb;4(2):890-6. doi: 10.1021/am201557k. Epub 2012 Jan 24.

Abstract

The shape and motion of drops on surfaces is governed by the balance between the driving and the pinning forces. Here we demonstrate control over the motion of droplets on an inclined surface by exerting control over the contact angle hysteresis. The external modulation of contact angle hysteresis is achieved through a voltage-induced local molecular reorganization within the surface film at the solid-liquid interface. We show that tuning contact angle hysteresis alone is sufficient to direct and deform drops when subjected to a constant external driving force, here gravity, in the absence of a pre-defined surface energy gradient or pattern. We also show that the observed stretching and contraction of the drops mimic the motion of an inchworm. Such reversible manipulation of the pinning forces could be an attractive means to direct drops, especially with the dominance of surface forces at micro-/nanoscale.

摘要

液滴在表面的形状和运动由驱动力和钉扎力之间的平衡决定。在这里,我们通过控制接触角滞后来展示对倾斜表面上液滴运动的控制。通过在固液界面处的表面膜内施加电压诱导的局部分子重排,实现了接触角滞后的外部调制。我们表明,仅调整接触角滞后就足以在没有预定义的表面能梯度或图案的情况下,在恒定的外部驱动力(此处为重力)作用下引导和变形液滴。我们还表明,观察到的液滴的拉伸和收缩类似于尺蠖的运动。这种对钉扎力的可逆操纵可能是一种有吸引力的引导液滴的方法,特别是在微/纳米尺度上表面力占主导地位的情况下。

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