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Electrowetting (EW)-Based Valve Combined with Hydrophilic Teflon Microfluidic Guidance in Controlling Continuous Fluid Flow

机译:基于电润湿(EW)的阀结合亲水性聚四氟乙烯微流控技术来控制连续流体流动

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摘要

Electrowetting (EW)-based techniques have been widely used in manipulating discrete liquid. However, few articles discussed the controlling of continuous fluid flow by using KW-based techniques. In this paper, an KW-based valve combined with plasma-modified Teflon surface, which serves as a microfluidic guidance, in controlling continuous fluid flow has been demonstrated. The plasma-modified Teflon surface is firstly demonstrated for confining continuous fluid flow. The EW-based microfluidic device possesses the functions of a valve and a microchannel without complex moving parts and grooved microchannels. The quantitative characteristics of the EW-based valve are also studied. Propylene carbonate (PC) is firstly demonstrated as the working liquid in the EW-based device because of its applications in parallel oligonucleotide synthesis. It is found that lower valve actuation voltage reduces the deterioration of the valve and improves the valve stability.
机译:基于电润湿(EW)的技术已广泛用于处理离散液体。但是,很少有文章讨论使用基于KW的技术控制连续流体流动的方法。在本文中,已经证明了基于KW的阀与等离子改性的特氟隆表面相结合,可作为微流体引导,以控制连续流体流动。首先证明了等离子体改性的特氟龙表面可用于限制连续的流体流动。基于EW的微流体装置具有阀和微通道的功能,而没有复杂的运动部件和带槽的微通道。还研究了基于EW的阀门的定量特性。碳酸亚丙酯(PC)由于在平行寡核苷酸合成中的应用而首次被证明是基于EW的设备中的工作液体。发现较低的阀致动电压减少了阀的劣化并提高了阀的稳定性。

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