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IONIC TRANSPORT IN FINITE LENGTH NANO-SIZED PORES AND CHANNELS

机译:有限长度纳米尺寸孔隙和通道的离子运输

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Surface-charge regulated ionic transport phenomena in nano-pores and nano-channels have important applications in bio molecular analyses and power conversion involving NEMS. In such devises, the surface-to-volume ratio increases significantly. In nanofluidics, one characteristic is the overlapping of the electrical double layer (EDL) and the disappearance of the electrically neutral zone. The configuration to be considered is a finite length nano pore/channel connected by two reservoirs. Multi-dimensional analyses based on solutions of the Poisson-Nernst-Planck (PNP) equation were performed for the configuration in this study. Numerical solutions show that the ionic transport process in such a configuration depends strongly on the liquid-solid interface models used. These interface models usually serve as wall boundary conditions in multi-dimensional numerical analyses. Most current models were derived based on 1-D fully developed analyses. Issues regarding the extension of the surface chemical equilibrium model to multi-dimensional nanofluidics simulations involving overlapping EDLs were investigated and discussed in this paper.
机译:纳米孔和纳米通道中的表面电荷调节的离子传输现象在生物分子分析和涉及NEMS的电力转换中具有重要应用。在这种设计中,表面到体积比显着增加。在纳米流体中,一个特征是电双层(EDL)的重叠和电中性区域的消失。要考虑的配置是由两个储存器连接的有限长度的纳米孔/通道。基于Poisson-Nernst-Planck(PNP)方程的解决方案进行多维分析,在本研究中进行了配置。数值解决方案表明,这种配置中的离子传输过程在使用的液体固体界面模型上强烈取决于所用的液体固体界面模型。这些界面模型通常用作多维数值分析中的墙边界条件。基于1-D完全开发的分析来导出大多数当前模型。本文研究了关于涉及重叠EDL的多维纳米流体模拟表面化学平衡模型的延伸的问题。

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