首页> 外文会议>International Conference on Micro/Nanoscale Heat and Mass Transfer >FLUID MIXING USING INDUCED CHARGE ELECTRO-OSMOTIC TRANSVERSE FLOW ACTUATED BY ASYMMETRICAL DRIVING ELECTRODE SEQUENCE
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FLUID MIXING USING INDUCED CHARGE ELECTRO-OSMOTIC TRANSVERSE FLOW ACTUATED BY ASYMMETRICAL DRIVING ELECTRODE SEQUENCE

机译:利用非对称驱动电极序列驱动的带电电渗流进行流体混合

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Microfluid mixing is an essential process in chemical analysis, drug test, and nanoparticle synthesis. Induced charge electro-osmosis (ICEO) has good capability in microfluid mixing for its reconfigurable vortex profile. We found experimentally ICEO transverse flow induced by the asymmetrical driving electrode has a good performance in disturbing the interface of two fluids. Encouraged by these aspects, we proposed a micromixer using ICEO transverse flows actuated by the asymmetrical driving electrode sequence to mix microfluids. We established a simulation model to investigate the evolution of the interface and demonstrate the work principle of this method. Moreover, we numerically explored the effects of device structure, and electrolyte characteristics on the capability of micromixer. Finally, we validated this method experimentally, and studied the effects of voltage intensity, frequency and flow rate on the mixing capability, obtaining mixing efficiency exceeding 94%. This method is a potential alternative in various microfluidic and lab-on-a-chip applications.
机译:微流体混合是化学分析,药物测试和纳米颗粒合成中必不可少的过程。感应电荷电渗(ICEO)具有可重构的涡流分布,在微流体混合中具有良好的能力。我们通过实验发现,由非对称驱动电极引起的ICEO横向流动在扰动两种流体的界面方面具有良好的性能。受这些方面的鼓励,我们提出了一种微混合器,该混合器使用由非对称驱动电极序列驱动的ICEO横向流动来混合微流体。我们建立了一个仿真模型来研究界面的演变并演示该方法的工作原理。此外,我们在数值上探索了装置结构和电解质特性对微混合器性能的影响。最后,我们通过实验验证了该方法,并研究了电压强度,频率和流速对混合能力的影响,获得了超过94%的混合效率。在各种微流体和芯片实验室应用中,该方法是一种潜在的替代方法。

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