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Tuning Ion Transport through a Nanopore by Self-Oscillating Chemical Reactions

机译:通过自振荡化学反应调整通过纳米孔的离子输送

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摘要

Ion transport in nanofluidic devices and biological ion channels are highly dependent on the local environmental conditions in the electrolyte solution. Many life processes in living systems are in dynamic electrolyte solutions, and many of them are self-oscillated. Tuning ion transport through a nanofluidic diode by the self-oscillating chemical reactions is demonstrated by modeling the electrokinetic ion transport process with a validated continuum model, which includes the time dependent Poisson-Nernst-Planck equations for the ionic mass transport of multiple ionic species with both volumetric and surface chemical reactions, and Stokes equations for the flow field. A pH oscillator caused by oscillating chemical reactions (i.e., bromate sulfite ferrocyanide system) is added at the tip side of the nanopore to periodically change its surface charge properties, consequently tuning the ion selectivity and ion transport through the nanopore. Results show that both the surface charge density of the nanopore and the electrokinetic ion transport phenomena oscillate simultaneously with the pH oscillation generated by the self oscillating chemical reactions. The numerical results obtained by our model qualitatively agree with the published experimental observations.
机译:纳米流体装置和生物离子通道中的离子输送高度依赖于电解质溶液中的局部环境条件。生活系统中的许多生命过程处于动态电解质解决方案,其中许多是自振荡的。通过用验证的连续体模型建模电动离子传输过程来证明通过自振动化学反应来调谐离子传输,通过验证的连续体模型来证明,包括用于多种离子物种的离子大规模运输的时间泊松 - 内部倾角方程体积和表面化学反应,以及流场的斯托克斯方程。在纳米孔的尖端侧加入由化学反应(即溴酸亚硫酸盐锰体系)引起的pH振荡器,以周期性地改变其表面电荷性质,从而调节通过纳米孔的离子选择性和离子输送。结果表明,纳米孔的表面电荷密度和电动离子传输现象同时振荡,与自振荡化学反应产生的pH振荡同时振荡。我们的模型获得的数值结果与已发表的实验观察结果定性同意。

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  • 来源
    《Analytical chemistry》 |2019年第7期|共8页
  • 作者单位

    Chongqing Univ Minist Educ Key Lab Biorheol Sci &

    Technol Chongqing 400030 Peoples R China;

    Chongqing Univ Minist Educ Key Lab Biorheol Sci &

    Technol Chongqing 400030 Peoples R China;

    Old Dominion Univ Dept Mech &

    Aeronaut Engn Norfolk VA 23529 USA;

    Chongqing Univ Sci &

    Technol Sch Safety Engn Chongqing 401331 Peoples R China;

    Chongqing Univ Minist Educ Key Lab Biorheol Sci &

    Technol Chongqing 400030 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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