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Electroosmotic transport in polyelectrolyte-grafted nanochannels with pH-dependent charge density

机译:pH依赖电荷密度的聚电解质接枝纳米通道中的电渗转运

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摘要

"Smart" polyelectrolyte-grafted or "soft" nanochannels with pH-responsiveness have shown great promise for applications like manipulation of ion transport, ion sensing and selection, current rectification, and many more. In this paper, we develop a theory to study the electroosmotic transport in a polyelectrolyte-grafted (or soft) nanochannel with pH-dependent charge density. In one of our recent studies, we have identified that explicit consideration of hydrogen ion concentration is mandatory for appropriately describing the electrostatics of such systems and the resulting monomer concentration must obey a non-unique, cubic distribution. Here, we use this electrostatic calculation to study the corresponding electroosmotic transport. We establish that the effect of pH in the electroosmotic transport in polyelectrolyte-grafted nanochannels introduces two separate issues: first is the consideration of the hydrogen and hydroxyl ion concentrations in describing the electroosmotic body force, and second is the consideration of the appropriate drag force that bears the signature of this cubic monomeric distribution. Our results indicate that the strength of the electroosmotic velocity for the pH-dependent case is always smaller than that for the pH-independent case, with the extent of this difference being a function of the system parameters. Such nature of the electroosmotic transport will be extremely significant in suppressing the electroosmotic flow strength with implications in large number applications such as capillary electropho-resis induced separation, electric field mediated DNA elongation, electrophoretic DNA nanopore sequencing, and many more.
机译:具有pH响应能力的“智能”聚电解质接枝或“软”纳米通道在诸如离子传输操纵,离子感测和选择,电流整流等应用中显示出巨大的希望。在本文中,我们开发了一种理论来研究具有pH依赖性电荷密度的聚电解质接枝(或软)纳米通道中的电渗输运。在我们最近的一项研究中,我们发现必须明确考虑氢离子浓度才能恰当地描述此类系统的静电,并且所产生的单体浓度必须服从非唯一的立方分布。在这里,我们使用这种静电计算来研究相应的电渗输运。我们建立了pH在聚电解质接枝纳米通道中电渗输运中的影响引入了两个独立的问题:首先是在描述电渗体力时考虑了氢和氢氧根离子的浓度,其次是考虑了适当的阻力带有这种立方单体分布的特征。我们的结果表明,pH依赖性情况下的电渗速度强度始终小于pH依赖性情况下的电渗速度强度,这种差异的程度取决于系统参数。电渗转运的这种性质在抑制电渗流动强度方面将具有极其重要的意义,涉及大量应用,例如毛细管电光诱导的分离,电场介导的DNA延伸,电泳DNA纳米孔测序等等。

著录项

  • 来源
    《Journal of Applied Physics》 |2015年第18期|185304.1-185304.9|共9页
  • 作者

    Guang Chen; Siddhartha Das;

  • 作者单位

    Department of Mechanical Engineering, University of Maryland, College Park, Maryland 20742, USA;

    Department of Mechanical Engineering, University of Maryland, College Park, Maryland 20742, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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