首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Performance characterization of an insulator-based dielectrophoretic microdevice.
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Performance characterization of an insulator-based dielectrophoretic microdevice.

机译:基于绝缘体的介电泳微器件的性能表征。

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Dielectrophoresis (DEP), the motion of particles in nonuniform electric fields, is a nondestructive electrokinetic (EK) transport mechanism can be used to concentrate and separate bioparticles. Traditionally, DEP has been performed employing microelectrodes, an approach that is expensive due to the cost of microelectrode fabrication. An alternative is insulator-based DEP (iDEP), an inexpensive method where nonuniform electric fields are created with arrays of insulating structures. This study presents the effects of operating conditions on the dielectrophoretic behavior of polystyrene microparticles under iDEP. Experiments were performed employing microchannels containing insulating structures that worked as insulators. The parameters varied were pH (8-9) and conductivity (25-100 microS/cm) of the bulk medium, and the magnitude of the applied field (200-850 V/cm). Optimal operating conditions in terms of pH and conductivity were obtained, and the microdevice performance was characterized in terms of concentration factor and minimum electric field required (minimum energy consumption). This is the first report on improving iDEP processes when EOF is present. DEP and EOF have been studied extensively, however, this study integrates the effect of suspending medium characteristics on both EK phenomena. These findings will allow improving the performance of iDEP microdevices achieving the highest concentration fold with the lowest energy consumption.
机译:介电电泳(DEP)是粒子在非均匀电场中的运动,是一种非破坏性的电动(EK)传输机制,可用于浓缩和分离生物粒子。传统上,DEP是使用微电极进行的,由于微电极的制造成本,这种方法很昂贵。一种替代方法是基于绝缘体的DEP(iDEP),这是一种廉价的方法,其中通过绝缘结构的阵列产生不均匀的电场。这项研究提出了操作条件对iDEP下聚苯乙烯微粒的介电泳行为的影响。使用包含用作绝缘体的绝缘结构的微通道进行了实验。变化的参数是散装介质的pH(8-9)和电导率(25-100 microS / cm),以及施加电场的大小(200-850 V / cm)。获得了在pH和电导率方面的最佳操作条件,并且在集中系数和所需的最小电场(最小能耗)方面表征了微器件的性能。这是存在EOF时有关改进iDEP流程的第一份报告。对DEP和EOF进行了广泛的研究,但是,该研究综合了悬浮介质特性对两种EK现象的影响。这些发现将有助于改善iDEP微型设备的性能,使其以最低的能耗实现最高的浓度倍数。

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