Local in-situ hydrophilic treatment of micro-channels using surface discharge

M. Gunji, H. Nakanishi, M. Washizu
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引用次数: 1

Abstract

In this paper, we describe a new method of local hydrophilic treatment of polymer micro-channel using surface discharge generated by a micro-electrode array. The method uses a pair of interdigitating electrodes embedded beneath a hydrophobic polymer (e.g. PDMS) micro-channel. When RF voltage is applied to the electrodes, surface discharge occurs inside the channel, and its inside surface is modified to be hydrophilic. Because the diffusion length of the generated plasma is only a few tens of micrometers, the treatment is local and selective. By using such a hydrophobic/hydrophilic patterning method, a droplet dispenser is developed. A straight PDMS channel having a side branch at the middle is fabricated, and the hydrophilic treatment is applied to the straight part. Due to capillary force, water solution fed from one end of the channel fills the entire straight channel, and when air is fed from the side, the liquid is divided into two parts, one ejected from the outlet. The ejection releases the pressure, and the channel is refilled, ready for the next ejection. The process produces a series of droplets, whose volume is precisely determined by the volume of the hydrophilic channel.
表面放电微通道局部原位亲水处理
本文介绍了一种利用微电极阵列产生的表面放电对聚合物微通道进行局部亲水性处理的新方法。该方法使用一对交叉电极嵌入在疏水性聚合物(例如PDMS)微通道下。当对电极施加射频电压时,沟道内部发生表面放电,其内表面被修饰为亲水性。由于产生的等离子体的扩散长度只有几十微米,所以处理是局部的和选择性的。利用这种疏水/亲水性图图化方法,研制了液滴分配器。制造在中间具有侧分支的直PDMS通道,并对直部分进行亲水性处理。由于毛细力的作用,从通道一端进料的水溶液充满整个直通道,当从一侧进料时,液体被分成两部分,一部分从出口喷出。弹射释放压力,通道被重新填充,为下一次弹射做好准备。这个过程产生一系列的液滴,其体积精确地取决于亲水通道的体积。
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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