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Metrology of confined flows using wide field nanoparticle velocimetry

机译:使用广域纳米粒子测速技术的密闭流计量

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摘要

The manipulation of fluids in microanofabricated systems opens new avenues to engineer the transport of matter at the molecular level. Yet the number of methods for the in situ characterization of fluid flows in shallow channels is limited. Here we establish a simple method called nanoparticle velocimetry distribution analysis (NVDA) that relies on wide field microscopy to measure the flow rate and channel height based on the fitting of particle velocity distributions along and across the flow direction. NVDA is validated by simulations, showing errors in velocity and height determination of less than 1% and 8% respectively, as well as with experiments, in which we monitor the behavior of 200 nm nanoparticles conveyed in channels of ~1.8 μm in height. We then show the relevance of this assay for the characterization of flows in bulging channels, and prove its suitability to characterize the concentration of particles across the channel height in the context of visco-elastic focusing. Our method for rapid and quantitative flow characterization has therefore a broad spectrum of applications in microanofluidics, and a strong potential for the optimization of Lab-on-Chips modules in which engineering of confined transport is necessary.
机译:在微/纳米制造系统中对流体的操纵为在分子水平上设计物质的运输开辟了新途径。然而,用于在浅通道中原位表征流体流动的方法数量有限。在这里,我们建立了一种称为纳米粒子测速分布分析(NVDA)的简单方法,该方法依赖于沿流向和跨流向的粒子速度分布的拟合,借助宽视场显微镜来测量流速和通道高度。 NVDA已通过仿真验证,显示出速度和高度测定的误差分别小于1%和8%,并且通过实验,我们监测了在高度约1.8μm的通道中输送的200nm纳米颗粒的行为。然后,我们显示了此测定法与表征膨胀通道中流动的相关性,并证明了它适合表征粘弹性聚焦情况下整个通道高度的颗粒浓度。因此,我们用于快速和定量流动表征的方法在微/纳米流体学中具有广泛的应用,并且在优化必须进行密闭运输工程的“芯片实验室”模块方面具有强大的潜力。

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