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Precise Positioning of Particles in Microwells within Horizontal DEP Cages

机译:在水平DEP笼内微孔中的颗粒精确定位

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An efficient method to trap and analyze particles avoiding excessive electric field strength is to use negative dielectrophoretic cages, where particles find stability in the electric field minimum. We present a novel structure where particles are trapped and forced to interact within microwells opened at top and bottom sides by creating a cylindrical negative dielectrophoretic cage. This approach provides a controlled alignment of the particles along a predefined axis. An array of microwells is built by drilling through holes with a diameter of 150 μm on a flexible printed circuit board with two Cu/Au layers separated by one polyimide layer, providing a cheap and disposable device. Levitation of one or two polystyrene beads with a diameter of 25 μm in D1-water was experimented confirming the positioning predicted by physical simulations. Vertical position of the particles as a function of the amplitude of polarization signals was extracted from simulations and confirmed by experimental results.
机译:一种有效的捕获和分析颗粒的方法,避免过量的电场强度是使用负电泳笼,其中粒子在电场中找到稳定性。我们提出了一种新颖的结构,其中颗粒被捕获并被迫在顶部和底侧打开的微孔内相互作用,通过产生圆柱形负介电泳笼。该方法提供颗粒沿预定轴的受控对准。通过在柔性印刷电路板上钻孔通过直径为150μm的孔来构建微孔阵列,其具有由一个聚酰亚胺层分开的两个Cu / Au层,提供便宜和一次性装置。实验在D1水中的直径为25μm的一个或两个聚苯乙烯珠的升定确认通过物理模拟预测的定位。颗粒作为偏振信号幅度的垂直位置被从模拟中提取并通过实验结果证实。

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