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A new floating electrode structure for generating homogeneous electrical fields in microfluidic channels

机译:一种用于在微流体通道中产生均匀电场的新型浮动电极结构

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In this article a new parallel electrode structure in a microfluidic channel is described that makes use of a floating electrode to get a homogeneous electrical field. Compared to existing parallel electrode structures, the new structure has an easier production process and there is no need for an electrical connection to both sides of the microfluidic chip. With the new chip design, polystyrene beads suspended in background electrolyte have been detected using electrical impedance measurements. The results of electrical impedance changes caused by beads passing the electrodes are compared with results in a similar planar electrode configuration. It is shown that in the new configuration the coefficient of variation of the impedance changes is lower compared to the planar configuration (0.39 versus 0.56) and less dependent on the position of the beads passage in the channel as a result of the homogeneous electrical field. To our knowledge this is the first time that a floating electrode is used for the realization of a parallel electrode structure. The proposed production method for parallel electrodes in microfluidic channels can easily be applied to other applications.
机译:在本文中,描述了一种在微流体通道中的新型平行电极结构,该结构利用浮动电极来获得均匀的电场。与现有的平行电极结构相比,新结构的生产工艺更容易,并且不需要电连接至微流控芯片的两侧。采用新的芯片设计,可以使用电阻抗测量方法检测出悬浮在背景电解液中的聚苯乙烯珠。将珠子通过电极引起的电阻抗变化结果与类似平面电极配置的结果进行比较。结果表明,在新的配置中,阻抗变化的变化系数与平面配置相比较低(0.39对0.56),并且由于均匀电场的作用,其对磁珠通道在通道中的位置的依赖性较小。据我们所知,这是首次使用浮动电极实现平行电极结构。所提出的用于微流体通道中的平行电极的生产方法可以容易地应用于其他应用。

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