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Easy route to superhydrophobic copper-based wire-guided droplet microfluidic systems

机译:通往超疏水铜基导线微滴微流控系统的便捷途径

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Droplet-based microfluidic systems are an expansion of the lab on a chip concept toward flexible, reconfigurable setups based on the modification and analysis of individual droplets. Superhydrophobic surfaces are one suitable candidate for the realization of droplet-based microfluidic systems as the high mobility of aqueous liquids on such surfaces offers possibilities to use novel or more efficient approaches to droplet movement. Here, copper-based superhydrophobic surfaces were produced either by the etching of polycrystalline copper samples along the grain boundaries using etchants common in the microelectronics industry, by electrodeposition of copper films with subsequent nanowire decoration based on thermal oxidization, or by a combination of both. The surfaces could be easily hydrophobized with thiol-modified fluor ocarbons, after which the produced surfaces showed a water contact angle as high as 171° ± 27deg;. As copper was chosen as the base material, established patterning techniques adopted from printed circuit board fabrication could be used to fabric ate macrostructures on the surfaces with the intention to confine the droplets and, thus, to reduce the system's sensitivity to tilting and vibrations. A simple droplet-based microfluidic chip with inlets, outlets, sample storage, and mixing areas was produced. Wire guidance, a relatively new actuation method applicable to aqueous liquids on superhydrophobic surfaces, was applied to move the droplets.
机译:基于液滴的微流体系统是基于芯片概念的实验室的扩展,它基于对单个液滴的修改和分析而向灵活,可重新配置的设置扩展。超疏水性表面是用于实现基于液滴的微流体系统的一种合适的候选物,因为此类表面上的水性液体的高迁移率提供了使用新颖或更有效的液滴移动方法的可能性。在这里,铜基超疏水表面是通过使用微电子工业中常见的蚀刻剂沿晶界蚀刻多晶铜样品,通过对铜膜进行电沉积以及随后基于热氧化的纳米线装饰或两者的结合来产生的。该表面可以容易地用硫醇改性的碳氟化合物疏水化,此后产生的表面显示出高达171°±27deg;的水接触角。当选择铜作为基础材料时,可以使用印刷电路板制造中采用的既定构图技术在表面上形成宏观结构,以限制液滴,从而降低系统对倾斜和振动的敏感性。产生了具有入口,出口,样品存储和混合区域的基于液滴的简单微流控芯片。钢丝导引是一种相对较新的致动方法,适用于超疏水表面上的水性液体,用于移动液滴。

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