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Dynamics of capillary flow in an open superoleophilic microchannel and its application to sensing of oil

机译:开放的超亲油微通道中毛细流动的动力学及其在油感测中的应用

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We report the dynamics of capillary flow of oil in an open superoleophilic channel. The superoleophilic surface is fabricated by spin coating a layer of PDMS + n-hexane followed by candle sooting. The occurrence of various flow regimes, including the inertial, visco-inertial, and Lucas-Washburn regimes, are studied using analytical modelling as well as experiments. In case of a superoleophilic channel, much shorter inertial regime is observed as compared to that in an oleophilic channel due to the wicking of oil into the micro-roughness grooves ahead to moving bulk liquid meniscus. The study of the effect of channel aspect ratio epsilon on the mobility parameter kshowed that the mobility parameter k is maximum for an aspect ratio of epsilon = 1.6, which is attributed to the balance between the capillary and viscous forces. Finally, we demonstrate the application of the superoleophilic channel integrated with electrodes for impedance-based sensing of oil from an oil-water emulsion.
机译:我们报告在开放的超亲油通道中的毛细血管流动的动力学。超亲油性表面是通过旋涂PDMS +正己烷层,然后进行蜡烛烟ot制成的。使用分析模型和实验研究了各种流动状态的发生,包括惯性,粘惯性和卢卡斯-瓦什本状态。在超亲油通道的情况下,由于油通过芯吸作用进入微粗糙度槽,从而使整体液体弯月面运动,因此与亲油通道相比,惯性范围要短得多。对通道长宽比ε对迁移率参数k的影响的研究表明,对于长径比ε= 1.6,迁移率参数k最大,这归因于毛细管力和粘性力之间的平衡。最后,我们展示了与电极集成的超亲油性通道在基于阻抗的油水乳液中油的传感中的应用。

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