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利用背压对多孔介质上的液滴迁移进行操控。

Droplet Mobility Manipulation on Porous Media Using Backpressure.

机构信息

School of Technological Applications, Technological Educational Institute of Sterea Ellada , Psachna 34400, Evia, Greece.

School of Chemical Engineering, National Technical University of Athens , Zografou Campus, Athens 15780, Greece.

出版信息

Langmuir. 2016 May 31;32(21):5250-8. doi: 10.1021/acs.langmuir.6b00900. Epub 2016 May 19.

Abstract

Wetting phenomena on hydrophobic surfaces are strongly related to the volume and pressure of gas pockets residing at the solid-liquid interface. In this study, we explore the underlying mechanisms of droplet actuation and mobility manipulation when backpressure is applied through a porous medium under a sessile pinned droplet. Reversible transitions between the initially sticky state and the slippery states are thus incited by modulating the backpressure. The sliding angles of deionized (DI) water and ethanol in DI water droplets of various volumes are presented to quantify the effect of the backpressure on the droplet mobility. For a 50 μL water droplet, the sliding angle decreases from 45 to 0° when the backpressure increases to ca. 0.60 bar. Significantly smaller backpressure levels are required for lower surface energy liquids. We shed light on the droplet actuation and movement mechanisms by means of simulations encompassing the momentum conservation and the continuity equations along with the Cahn-Hilliard phase-field equations in a 2D computational domain. The droplet actuation mechanism entails depinning of the receding contact line and movement by means of forward wave propagation reaching the front of the droplet. Eventually, the droplet skips forward. The contact line depinning is also corroborated by analytical calculations based on the governing vertical force balance, properly modified to incorporate the effect of the backpressure.

摘要

疏水表面的润湿现象与驻留在固液界面处的气体口袋的体积和压力密切相关。在这项研究中,我们通过在固定液滴下的多孔介质施加背压来探索液滴驱动和移动性操纵的潜在机制。通过调节背压,可以引发初始粘性状态和光滑状态之间的可逆转变。我们展示了去离子(DI)水和 DI 水中各种体积的乙醇液滴的滑动角,以量化背压对液滴移动性的影响。对于 50 μL 的水液滴,当背压增加到约 0.60 巴时,滑动角从 45 度减小到 0 度。对于表面能较低的液体,所需的背压水平要小得多。我们通过模拟来阐明液滴驱动和运动机制,模拟涵盖了二维计算域中的动量守恒和连续性方程以及 Cahn-Hilliard 相场方程。液滴驱动机制涉及后退接触线的去钉和通过前向波传播到达液滴前端的移动。最终,液滴会向前跳跃。接触线去钉也得到了基于控制垂直力平衡的分析计算的证实,该计算经过适当修改以纳入背压的影响。

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