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Design of a hybrid advective-diffusive microfluidic system with ellipsometric detection for studying adsorption

机译:椭偏检测混合对流-扩散微流控系统的吸附研究

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摘要

Establishing and maintaining concentration gradients that are stable in space and time is critical for applications that require screening the adsorption behavior of organic or inorganic species onto solid surfaces for wide ranges of fluid compositions. In this work, we present a design of a simple and compact microfluidic device based on steady-state diffusion of the analyte, between two control channels where liquid is pumped through. The device generates a near-linear distribution of concentrations. We demonstrate this via experiments with dye solutions and comparison to finite-element numerical simulations. In a subsequent step, the device is combined with total internal reflection ellipsometry to study the adsorption of (cat)ions on silica surfaces from CsCl solutions at variable pH. Such a combined setup permits a fast determination of an adsorption isotherm. The measured optical thickness is compared to calculations from a triple layer model for the ion distribution, where surface complexation reactions of the silica are taken into account. Our results show a clear enhancement of the ion adsorption with increasing pH, which can be well described with reasonable values for the equilibrium constants of the surface reactions.
机译:建立和保持在空间和时间上稳定的浓度梯度对于需要筛选有机或无机物质在各种流体成分范围内在固体表面上的吸附行为的应用至关重要。在这项工作中,我们提出了一种基于分析物的稳态扩散的简单而紧凑的微流控装置的设计,该装置在泵送通过的两个控制通道之间。该设备生成浓度的近乎线性分布。我们通过使用染料溶液的实验以及与有限元数值模拟的比较来证明这一点。在随后的步骤中,将该设备与全内反射椭圆仪结合使用,以研究pH可变的CsCl溶液在二氧化硅表面上的(阳离子)吸附。这种组合设置允许快速确定吸附等温线。将测得的光学厚度与离子分布的三层模型的计算结果进行比较,其中考虑了二氧化硅的表面络合反应。我们的结果表明,随着pH的增加,离子吸附明显增强,可以用合理的表面反应平衡常数值很好地描述离子吸附。

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