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AC-dielectrophoretic characterization and separation of submicron and micron particles using sidewall AgPDMS electrodes

机译:使用侧壁AgPDMS电极进行AC介电电泳表征和分离亚微米和微米颗粒

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摘要

The recent development of microfluidic “lab on a chip” devices requires the need to continuously separate submicron particles. Here, we present a PDMS microfluidic device with sidewall conducting PDMS (AgPDMS) composite electrodes capable of separating submicron particles in hydrodynamic flow. In particular, the device can service dual functions. First, the AgPDMS composite electrodes embedded in a sidewall of the device channel allow for performing AC-dielectrophoretic (DEP) characterization through direct microscopic observation of particle behavior. Characterization experiments are carried out for numerous parameters including particle size, medium conductivity, and AC field frequency to reveal important dielectrophoresis DEP information in terms of the crossover frequency and positiveegative DEP behavior under specific frequencies. Second, the device offers an advantage that sidewall AgPDMS composite electrodes can produce strong DEP effects throughout the entire channel height, and thus the robustness of the on-chip particle separation is demonstrated for continuous separation in a flowing mixture of 0.5 and 5 μm particles with 100% separation efficiency.
机译:微流控“芯片实验室”设备的最新发展要求不断分离亚微米颗粒。在这里,我们介绍了一种PDMS微流体装置,其侧壁导电PDMS(AgPDMS)复合电极能够分离流体动力流中的亚微米颗粒。特别是,该设备可以提供双重功能。首先,嵌入在设备通道侧壁中的AgPDMS复合电极允许通过直接微观观察颗粒行为来执行AC-介电电泳(DEP)表征。对包括粒径,中等电导率和交流电场频率在内的众多参数进行了表征实验,以揭示重要的介电电泳DEP信息,包括交叉频率和在特定频率下的正/负DEP行为。其次,该器件具有的优势在于,侧壁AgPDMS复合电极可在整个通道高度上产生很强的DEP效应,因此,片上颗粒分离的鲁棒性在0.5和5μm的流动混合物与100%分离效率。

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