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用于控制微小液滴或胶体沉积的超疏水表面的拉链效应。

Zipping effect on omniphobic surfaces for controlled deposition of minute amounts of fluid or colloids.

机构信息

University Lille Nord de France, Villeneuve d'Ascq, Institute of Electronics, Microelectronics and Nanotechnology, UMR CNRS 8520, Villeneuve d'Ascq, France.

出版信息

Small. 2012 Apr 23;8(8):1229-36. doi: 10.1002/smll.201101895. Epub 2012 Feb 16.

Abstract

When a drop sits on a highly liquid-repellent surface (super-hydrophobic or super-omniphobic) made of periodic micrometer-sized posts, its contact-line can recede with very weak mechanical retention providing that the liquid stays on top of the microsized posts. Occurring in both sliding and evaporation processes, the achievement of low-contact-angle hysteresis (low retention) is required for discrete microfluidic applications involving liquid motion or self-cleaning; however, careful examination shows that during receding, a minute amount of liquid is left on top of the posts lying at the receding edge of the drop. For the first time, the heterogeneities of these deposits along the drop-receding contact-line are underlined. Both nonvolatile liquid and particle-laden water are used to quantitatively characterize what rules the volume distribution of deposited liquid. The experiments suggest that the dynamics of the liquid de-pinning cascade is likely to select the volume left on a specific post, involving the pinch-off and detachment of a liquid bridge. In an applied prospective, this phenomenon dismisses such surfaces for self-cleaning purposes, but offers an original way to deposit controlled amounts of liquid and (bio)-particles at well-targeted locations.

摘要

当液滴落在由周期性微尺寸立柱组成的高度抗液(超疏水或超双疏)表面上时,只要液体位于微尺寸立柱的顶部,液滴的接触线就可以在非常弱的机械保持力的作用下后退。在滑动和蒸发过程中都会发生这种情况,对于涉及液体运动或自清洁的离散微流控应用,需要实现低接触角滞后(低保持力);然而,仔细观察表明,在后退过程中,仍有少量液体留在位于液滴后退边缘的立柱顶部。本文首次强调了这些沉积物沿液滴后退接触线的非均质性。使用非挥发性液体和含颗粒的水来定量表征控制沉积液体体积分布的规律。实验表明,液体去钉扎级联的动力学可能会选择在特定立柱上留下的液体体积,涉及液体桥的捏合和分离。在应用方面,这种现象排除了这些表面用于自清洁的目的,但为在目标位置沉积受控量的液体和(生物)颗粒提供了一种新颖的方法。

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