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首页> 外文期刊>MATEC Web of Conferences >Electrokinetically Control Flow Mixing in Microfluidic Chip Utilizing Microelectrode Based on Indium Tin Oxide
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Electrokinetically Control Flow Mixing in Microfluidic Chip Utilizing Microelectrode Based on Indium Tin Oxide

机译:基于氧化铟锡的微电极在微流控芯片中的电动控制流混合

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摘要

In order to blend the liquid in the microfluidic chip adequately, this paper presented a novel mixing scheme in which the species streams was mixed via the application of Lorenz chaotic system algorithm to three pair of parallel electrodes mounted on the surfaces of the mixing chamber to produces chaotic electric fields. To select the better microelectrode arrays, the paper also discussed the advantages of the indium tin oxide (ITO) materials and used ITO to design the microelectrode array. Finally, simulations of the mixing process under the control of the proposed chaotic electric fields are performed. Analysis result shows that the correlation coefficient between the largest Lyapunov exponents on Lorenz chaotic system and chaotic flow behavior is 0.72 which shows a better synchronism, and it also proved that ITO is a better material to fabricate the microelectrode arrays.
机译:为了充分混合微流控芯片中的液体,本文提出了一种新颖的混合方案,其中通过应用Lorenz混沌系统算法将物种流混合到安装在混合室表面上的三对平行电极上,以产生混沌电场。为了选择更好的微电极阵列,本文还讨论了铟锡氧化物(ITO)材料的优点,并使用ITO来设计微电极阵列。最后,对所提出的混沌电场控制下的混合过程进行了仿真。分析结果表明,Lorenz混沌系统上最大的Lyapunov指数与混沌流动行为之间的相关系数为0.72,显示出更好的同步性,也证明ITO是制备微电极阵列的较好材料。

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