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Size-based Particles Separation Utilizing Dielectrophoresis Technique

机译:基于尺寸的粒子分离利用介电泳技术

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This paper describes separation of 3 μm and 10 μm polystyrene particles using dielectrophoresis (DEP) technique. An array of tapered square electrodes with size of 1mm × 1mm and gap size of 80 μm are used in this study. the optimum input frequency in separation for both engineered particles by using droplet technique. Experiment was conducted under negative dielectrophoresis (N_(DEP)), positive dielectrophoresis (P_(DEP)) and crossover frequency of this engineered particles with range 0 to 1.5 MHz. Implementation of dielectrophoresis prove that the capability to manipulate particles based on input frequency tuned at 265 kHz which is F_(DEP) equal to zero. The separation characteristic of polystyrene particles is compare with the separation characteristic of real biological cells i.e red blood cell (RBC) and platelet. Possible application of dielectrophoresis in separation is blood component separation.
机译:本文描述了使用介电泳(DEP)技术的3μm和10μM聚苯乙烯颗粒的分离。在本研究中使用尺寸为1mm×1mm×1mm和间隙尺寸的锥形方形电极阵列。通过使用液滴技术将两个工程粒子分离的最佳输入频率。实验在负电泳(N_(DEP))下进行,正电泳(P_(DEP))和该工程颗粒的交叉频率,其范围为0至1.5MHz。介电泳的实现证明了基于在265kHz的输入频率调谐的输入频率的能力,其是F_(DEP)等于零。聚苯乙烯颗粒的分离特性与真实生物细胞的分离特性相比,红细胞(RBC)和血小板。可以在分离中施加介电泳的应用是血液成分分离。

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