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An efficient planar accordion-shaped micromixer: from biochemical mixing to biological application

机译:高效的平面手风琴形状微混合器:从生物化学混合到生物学应用

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Micromixers are the key component that allow lab-on-a-chip and micro total analysis systems to reach the correct level of mixing for any given process. This paper proposes a novel, simple, passive micromixer design characterized by a planar accordion-shape geometry. The geometrical characteristics of the presented design were analyzed numerically in the range of 0.01 ?12 ?11?m2/s. The micromixer structure was fabricated in a simple single-step process using maskless lithography and soft lithography. The experimental results showed a very good agreement with the predicted numerical results. This micromixer design including a single serpentine unit (1-SERP) displayed an efficiency higher than 90% (mixing length?=?6.4?mm) creating a pressure drop of about 500?Pa at Re?=?0.1 and 60?kPa at Re?=?10. A mixing efficiency of almost 100% was readily reached when three serpentine units were included (3-SERP). Finally, the potential diagnostic value of the presented microdevice was validated experimentally for Red Blood Cell (RBC) lysis.
机译:Micromixers是允许实验室和微量分析系统达到任何给定过程的正确混合水平的关键组件。本文提出了一种新颖,简单的被动的微混销器设计,其特征在于平面手风琴形状几何形状。在数值上进行分析在0.01≤12的范围内的几何特性在0.01?12 11 / sup> 2 / s的范围内。使用掩模光刻和软光刻在简单的单步过程中制造微混合器结构。实验结果表明,与预测的数值效果非常良好。这种微混销器设计包括单个蛇形单元(1-SERP)的效率高于90%(混合长度?=Δ6.4mm),在RE?= 0.1和60?KPA AT重新?=?10。当包含三种蛇形单位时,容易达到近100%的混合效率(3-SERP)。最后,针对红细胞(RBC)裂解进行实验验证所呈现的微生物的潜在诊断值。

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