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Reservoir-based dielectrophoresis for microfluidic particle separation by charge

机译:基于储层的介电泳,通过电荷分离微流控颗粒

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摘要

The separation of particles from a complex mixture is important to a wide range of applications in industry, biology, medicine etc. This work demonstrates a microfluidic approach to separate similar-sized fluorescent and nonfluorescent particles based upon the difference in their surface charges inside a reservoir. Such a separation exploits the reservoir-based dielectrophoresis, which is induced by the inherent electric field gradient formed at the reservoir-microchannel junction, to isolate the trapped fluorescent particles within the reservoir from the streaming nonfluorescent particles. The effects of the DC field magnitude (or equivalently the electrokinetic flow magnitude) and the AC field frequency of DC-biased AC electric fields are investigated on particle separation. A numerical model is also developed to simulate the electrokinetic transport behaviors of the two types of particles. This demonstrated reservoir-based dielectrophoresis particle sorter can operate in parallel to increase the flow throughput. It is suitable for integration with other functional parts into lab-on-a-chip devices for diverse particle handling.
机译:从复杂混合物中分离颗粒对于工业,生物学,医学等领域的广泛应用非常重要。这项工作证明了一种微流体方法可以根据储库内表面电荷的不同来分离大小相似的荧光和非荧光颗粒。这种分离利用了基于储层的介电泳,该介电泳是由在储层-微通道接合处形成的固有电场梯度引起的,以将储层内捕获的荧光粒子与流动的非荧光粒子隔离开。研究了直流电场强度(或等效地,电动流动强度)和直流偏置交流电场的交流电场频率对颗粒分离的影响。还开发了一个数值模型来模拟两种类型的粒子的电动传输行为。这种基于储库的介电泳颗粒分选仪可以并行运行以提高流量。它适合与其他功能部件集成到片上实验室设备中,以进行多种颗粒处理。

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