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Continuous particle separation using pressure-driven flow-induced miniaturizing free-flow electrophoresis (PDF-induced μ-FFE)

机译:使用压力驱动流动诱导的小型自由流电泳的连续颗粒分离(PDF诱导的μ-FFE)

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In this paper, we introduce pressure-driven flow-induced miniaturizing free-flow electrophoresis (PDF-induced μ-FFE), a novel continuous separation method. In our separation system, the external flow and electric field are applied to particles, such that particle movement is affected by pressure-driven flow, electroosmosis, and electrophoresis. We then analyzed the hydrodynamic drag force and electrophoretic force applied to the particles in opposite directions. Based on this analysis, micro- and nano-sized particles were separated according to their electrophoretic mobilities with high separation efficiency. Because the separation can be achieved in a simple T-shaped microchannel, without the use of internal electrodes, it offers the advantages of low-cost, simple device fabrication and bubble-free operation, compared with conventional μ-FFE methods. Therefore, we expect the proposed separation method to have a wide range of filtering/separation applications in biochemical analysis.
机译:在本文中,我们引入了压力驱动的流动诱导的小型自由流电泳(PDF诱导的μ-FFE),一种新的连续分离方法。在我们的分离系统中,外部流动和电场施加到颗粒上,使得颗粒运动受到压力驱动的流动,电渗透和电泳的影响。然后,我们分析了在相反方向上施加到颗粒上的流体动力阻力和电泳力。基于该分析,根据其具有高分离效率的电泳迁移来分离微型和纳米尺寸颗粒。由于分离可以在简单的T形微通道中实现,而无需使用内部电极,它提供低成本,简单的装置制造和无气泡操作的优点,与传统的μ-FFE方法相比。因此,我们预计所提出的分离方法在生化分析中具有广泛的滤波/分离应用。

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