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Experimental study of the separation behavior of nanoparticles in micro- and nanochannels

机译:纳米和纳米通道中纳米颗粒分离行为的实验研究

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摘要

In this article, we investigate the effects of pH, ionic strength, and channel height on the mobility and dif- fusivity of charged spherical particles within planar micro-fluidic channels. Specifically, we report results of a broad experimental study on the transport and separation behavior of 50 and 100 nm spherical carboxylated polystyrene nanoparticles, confined in 20 μm, 1 μm, and 250 nm deep fiuidic channels. We find that pH, ionic strength, and channel height have coupled impacts on mobility changes. In particular, we show that, depending on pH, the dependence of particle mobility on channel size can have opposing behavior. In addition, we also show that at the nanoscale, at lower ionic strengths, there is a substantial increase in mobility, due to enhanced electric fields within the nanochannels. These effects are important to understand in order to avoid potential downfalls in terms of separation efficiency as well as design for better tuning of separation performance in micro- and nanochannels. Finally, we propose a method to estimate the effective zeta potential of spherical particles from measured electrophoretic mobility data. This could prove useful in characterizing a heterogeneous collection of particles having a distribution over a range of values of the zeta potential.
机译:在本文中,我们研究了pH,离子强度和通道高度对平面微流体通道内带电球形颗粒的迁移率和扩散率的影响。具体而言,我们报告了关于50和100 nm球形羧化聚苯乙烯纳米颗粒的运输和分离行为的广泛实验研究的结果,这些纳米颗粒局限于20μm,1μm和250 nm深的流体通道中。我们发现pH,离子强度和通道高度对迁移率变化具有耦合影响。特别是,我们表明,根据pH值,颗粒迁移率对通道尺寸的依赖性可能具有相反的行为。此外,我们还表明,由于纳米通道内电场的增强,在纳米级上,离子强度较低时,迁移率显着提高。了解这些效果很重要,以便避免在分离效率方面的潜在下降以及在微通道和纳米通道中更好地调整分离性能的设计。最后,我们提出了一种根据测得的电泳迁移率数据估算球形颗粒的有效ζ电势的方法。这可能被证明有助于表征在zeta电位值范围内分布的颗粒的异质集合。

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