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利用带有绝缘微结构和双平面微电极的微流控芯片中的负介电泳力对粒子进行三维聚焦。

Three-dimensional focusing of particles using negative dielectrophoretic force in a microfluidic chip with insulating microstructures and dual planar microelectrodes.

机构信息

Department of Mechanical Engineering and Advanced Institute of Manufacturing for High-tech Innovations, National Chung Cheng University, Chia Yi, Taiwan, ROC.

出版信息

Electrophoresis. 2011 Sep;32(18):2428-35. doi: 10.1002/elps.201100085. Epub 2011 Aug 23.

Abstract

The focusing of biological and synthetic particles in microfluidic devices is a prerequisite for the construction of microstructured materials, as well as for medical applications. In the present study, a microdevice that can effectively focus particles in three dimensions using a combination of insulator-based and metal-electrode dielectrophoresis (DEP) has been designed and fabricated. The DEP force is employed to confine the particles using a negative DEP response. Four insulating microstructures, which form an X-pattern in the microchannel, were employed to distort the electric field between the insulators in a conducting solution, thereby generating regions with a high electric-field gradient. Two strips of microelectrodes on the top and bottom surfaces were placed in the middle of the microchannel and connected to an electric pole. Two sets of dual-planar electrodes connected to the opposite pole were placed at the sides of the microchannel at the top and bottom surfaces. The results of a transient simulation of tracks of polystyrene particles, which was performed using the commercial software package CFD-ACE⁺ (ESI Group, France), demonstrate that the three-dimensional focusing of particles was achieved when the applied voltage was larger than 35 V at a frequency of 1 MHz. Furthermore, the focusing performance increased with the increased strength of the applied electric field and decreased inlet flow rate. Experiments on particle focusing, employing polystyrene particles 10 μm in diameter, were conducted to demonstrate the feasibility of the proposed design; the results agree with the trend predicted by numerical simulations.

摘要

在微流控装置中聚焦生物和合成颗粒是构建微结构材料以及医疗应用的前提条件。在本研究中,设计并制造了一种能够使用基于绝缘体和金属电极介电泳(DEP)的组合有效在三维空间中聚焦颗粒的微器件。DEP 力用于通过负 DEP 响应来限制颗粒。四个绝缘微结构在微通道中形成 X 图案,用于在导电溶液中扭曲绝缘体之间的电场,从而产生具有高电场梯度的区域。在微通道的中间放置了上下表面上的两个微电极条,并与电极连接。在微通道的两侧的上下表面上放置了两组连接到相反电极的双平面电极。使用商业软件包 CFD-ACE⁺(ESI Group,法国)进行的聚苯乙烯颗粒轨迹瞬态模拟的结果表明,当施加电压大于 35V 且频率为 1MHz 时,实现了颗粒的三维聚焦。此外,聚焦性能随着施加电场强度的增加和入口流速的降低而增加。进行了使用直径为 10μm 的聚苯乙烯颗粒的颗粒聚焦实验,以证明所提出设计的可行性;结果与数值模拟预测的趋势一致。

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