Femtosecond Laser Ablated Tracks on Smart Surfaces for Droplet Manipulation Applications

Zeeshan Rashid, U. C. Coskun, Y. Morova, B. Morova, A. A. Bozkurt, A. Erten, A. Jonáš, S. Aktürk, A. Kiraz
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Abstract

In droplet based microfluidics, ability of controlling the motion of the droplets insidechips have great importance for the applications such guiding, sorting, mixing and dividing of liquid droplets. In this study, we fabricated hydrophilic microchannels inside the chips by femtosecond laser ablation technique in order to control droplet motion. The laser beam focused on PDMS converts the irradiated regions to hydrophilic by ablating the coating entirely from the surface. Droplets follow the tracks because of the difference in wettability of ablated region and PDMS surfaces together with the topographical profile of the ablated tracks. Within this study, we investigated the manipulation of three kind of liquid droplets (water/surfactant mixture, pure water and pure etylene glycol) along microchannels with depths of 1μm, 1.5μm and 2μm. We verified the experimental results with simulations and analyzed the trajectories of the moving droplets with the different wettability along the tracks of different depths. Our results showed that, while topographical effects play role in droplet guiding for 1.5μm and 2μm tracks, for the case of 1μm depth of channel, surface energy modifications cause the guiding rather than the topographical step on the surface. These results will pioneer for sorting applications of different micro droplets mixed in the same microfluidic chip.
飞秒激光烧蚀轨道在液滴操纵应用中的智能表面
在基于液滴的微流体中,控制液滴在芯片内运动的能力对于液滴的引导、分选、混合和分离等应用具有重要意义。在本研究中,我们利用飞秒激光烧蚀技术在芯片内部制造亲水微通道,以控制液滴运动。聚焦在PDMS上的激光束通过从表面完全烧蚀涂层,将辐照区域转化为亲水区域。由于烧蚀区和PDMS表面的润湿性不同以及烧蚀痕迹的地形特征,液滴会沿着烧蚀痕迹移动。在本研究中,我们研究了三种液滴(水/表面活性剂混合物,纯水和纯乙二醇)沿深度为1μm, 1.5μm和2μm的微通道的操作。通过模拟验证了实验结果,并分析了不同润湿性的液滴在不同深度的轨迹上的运动轨迹。研究结果表明,在1.5μm和2μm沟道中,地形效应对液滴的导向起作用,而在1μm沟道深度的情况下,表面能的改变对液滴的导向起作用,而不是对液滴表面的地形台阶起作用。这些结果将为在同一微流控芯片中混合不同微液滴的分选应用开辟道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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