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Unsteady Flow Simulations for Microchannel Design and Its Fabrication for Nanoparticle Synthesis

机译:微通道设计的非稳态流动模拟及其纳米颗粒合成的制备

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Micro-mixers play an important role in the lab-on-a-chip applications and micro total analysis systems to acquire the correct level of mixing for any given process. The mixing process can be classified as active or passive according to the use of external energy. Literature of microfluidics reports that most of the work is done on the models of steady laminar flow; however, the study of unsteady laminar flow is an active area of research at present. There are wide applications of this, out of which, we consider nanoparticle synthesis in micro-mixers. In this work, we have developed a model for unsteady flow to study the mixing performance of a passive micro mixer for reactants used for such synthesis. The model is developed in Finite Volume Method (FVM)-based software, OpenFOAM. The model is tested by carrying out the simulations at Re of 0.5. Mixing performance of the micro-mixer is investigated using simulated concentration values of mixed species across the width of the micro-mixer and calculating the variance across a line profile. Experimental validation is done by passing dyes through a Y shape micro-mixer fabricated using polydimethylsiloxane (PDMS) polymer and comparing variances with the simulated ones. Gold nanoparticles are later synthesized through the micro-mixer and collected at two different times leading to significantly different size distributions. These times match with the time scales over which reactant concentrations vary as obtained from simulations. Our simulations could thus be used to create design aids for passive micro-mixers used in nanoparticle synthesis.
机译:微型混合器在芯片实验室应用和微型总体分析系统中起着重要作用,以获取任何给定过程的正确混合水平。根据外部能量的使用,混合过程可分为主动或被动两种。微流体学文献报道,大多数工作是在稳定层流模型上完成的。然而,非恒定层流的研究是当前研究的一个活跃领域。这有广泛的应用,其中,我们考虑在微混合器中合成纳米颗粒。在这项工作中,我们已经建立了非稳态流动模型,以研究用于这种合成反应物的无源微型混合器的混合性能。该模型是在基于有限体积方法(FVM)的软件OpenFOAM中开发的。通过在Re为0.5时进行仿真来测试模型。使用模拟混合器在整个微型混合器宽度上的浓度值并计算整个线轮廓的方差来研究微型混合器的混合性能。通过使染料通过使用聚二甲基硅氧烷(PDMS)聚合物制成的Y形微型混合器,并将方差与模拟值进行比较,可以完成实验验证。金纳米颗粒随后通过微混合器合成,并在两个不同的时间收集,从而导致尺寸分布明显不同。这些时间与从模拟获得的反应物浓度变化的时间尺度相匹配。因此,我们的仿真可用于为纳米颗粒合成中使用的无源微混合器创建设计辅助工具。

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