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Multi-vortical flow inducing electrokinetic instability in ion concentration polarization layer

机译:Multi-vortical流诱导动电的不稳定的离子浓度极化层

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摘要

In this work, we investigated multiple vortical flows inside the ion concentration polarization (ICP) layer that forms due to a coupling of applied electric fields and the semipermeable nanoporous junction between microchannels. While only a primary vortex near perm-selective membrane is traditionally known to lead to electrokinetic instability, multiple vortexes induced by the primary vortex were found to play a major role in the electrokinetic instability. The existence of multiple vortexes was directly confirmed by experiments using particle tracers and interdigitated electrodes were used to measure the local concentration profile inside the ICP layer. At larger applied electric fields, we observed aperiodic fluid motion due to electrokinetic instabilities which develop from a coupling of applied electric fields and electrical conductivity gradients induced by the ICP. The electrokinetic instability at micro-nanofluidic interfaces is important in the development of various electro-chemical-mechanical applications such as fuel cells, bio-analytical preconcentration methods, water purification/desalination and the fundamental study of ion electromigration through nanochannels and nonporous perm-selective membranes.
机译:在这项工作中,我们研究了多个旋转的流内的离子浓度极化(ICP)层,由于耦合的形式应用电场和半透纳米多孔巩膜之间的连接。只有一个主涡选择性渗透附近膜通常是已知的导致动电的不稳定,多个漩涡由主涡被发现在动电的主要作用不稳定。多漩涡直接的存在实验证实了使用粒子示踪剂和互相交叉电极测量局部浓度配置文件里面ICP层。我们观察到非周期由于流体运动动电的发展从一个不稳定应用电场耦合导电性梯度诱导的ICP。micro-nanofluidic接口是很重要的开发各种electro-chemical-mechanical应用,如燃料电池,bio-analytical预选方法,水净化/海水淡化和离子电迁移的基本研究纳米通道和无孔隙的选择性渗透膜。

著录项

  • 来源
    《Nanoscale》 |2012年第23期|7406-7410|共5页
  • 作者单位

    Department of Mechanical Engineering, Pohang University of Science and Technology, Pohang 790-784, Republic of Korea;

    Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA;

    Department of Electrical and Computer Engineeringllnter-university Semiconductor Research Center, Seoul National University, Seoul 151-744, Republic of Korea.;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
  • 关键词

    Couplings; Electric fields; Fluid motionion concentrationmicrochannelselectrokineticsfuel batteries;

    机译:联轴器;电场;流体motionionconcentrationmicrochannelselectrokineticsfuel电池;

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