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HETEROGENEOUS SURFACE CHARGE ENHANCED MICRO-MIXER FOR ELECTROKINETIC FLOWS

机译:异质表面电荷增强的电动流动微混合器

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Enhancing species mixing in microfluidic applications is key to reducing analysis time and increasing device portability. Mixing in electroosmotic flows is usually diffusion-dominated requiring extended channel lengths and retention times. Recent numerical studies have indicated that the introduction of electrically charged surface heterogeneities may augment mixing efficiencies by creating localized regions of flow circulation. In this study, we experimentally visualize the effects of surface charge patterning and develop an optimized electrokinetic micro-mixer applicable to the low Reynolds number regime. Using the optimized micro-mixer, mixing efficiencies were improved between 22% and 68% for applied potentials ranging from 70 - 555 V/cm when compared with the homogeneous case. For 95% mixture, this equates to a potential decrease in required mixing channel length of up to 88% for flows with Peclet numbers between 190 and 1500.
机译:增强在微流体应用中混合的物种是减少分析时间和增加装置便携性的关键。在电渗流中混合通常是延伸沟道长度和保留时间的扩散主导。最近的数值研究表明,引入电荷的表面异质性可以通过产生流动循环的局部区域来增加混合效率。在这项研究中,我们通过实验可视化表面电荷图案化的影响,并开发适用于低雷诺数制度的优化电动微混合器。使用优化的微混合器,与均匀情况相比,在70-555V / cm的施加电位范围内的22%至68%的混合效率提高了22%至68%。对于95%的混合物,这相当于所需的混合通道长度的电位降低高达88%,对于190和1500之间的Peclet数量的流动。

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