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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Influences of Cone Angle and Surface Charge Density on the Ion Current Rectification Behavior of a Conical Nanopore
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Influences of Cone Angle and Surface Charge Density on the Ion Current Rectification Behavior of a Conical Nanopore

机译:锥角和表面电荷密度对锥形纳米孔离子电流整流行为的影响

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摘要

Due to its potential applications in biotechnology, ion current rectification (ICR) arising from the asymmetric nature of ion transport in a nanochannel has drawn the attention of researchers in various fields. Previous studies usually neglect the effects of osmotic and electroosmotic flows. In this study, a more general model taking account of these effects is adopted to describe the ICR behavior of a conical nanopore. The influences of the cone angle, surface charge density, and bulk salt concentration on this behavior are investigated, and mechanisms proposed to explain the results are obtained. We show that if the cone angle is enlarged by fixing the nanopore tip radius and raising its base radius, the ICR ratio has a local maximum. This behavior may not present if the cone angle is enlarged by fixing the nanopore base radius and raising its tip radius. The local maximum in the ICR ratio does not exist if the bulk salt concentration is sufficiently low or sufficiently high. This ratio also has a local maximum as the surface charge density varies, and the larger the cone angle, the higher the surface charge density at which the local maximum in the ICR ratio occurs.
机译:由于其在生物技术中的潜在应用,由纳米通道中离子传输的不对称性质引起的离子电流整流(ICR)引起了各个领域研究人员的关注。先前的研究通常忽略了渗透流和电渗透流的影响。在这项研究中,考虑到这些影响的更通用的模型用于描述圆锥形纳米孔的ICR行为。研究了锥角,表面电荷密度和大块盐浓度对此行为的影响,并提出了解释结果的机制。我们显示,如果通过固定纳米孔尖端半径并提高其基本半径来扩大锥角,则ICR比率将具有局部最大值。如果通过固定纳米孔基础半径并提高其尖端半径来扩大锥角,则可能不会出现此现象。如果总体盐浓度足够低或足够高,则ICR比中的局部最大值将不存在。当表面电荷密度变化时,该比率也具有局部最大值,并且锥角越大,ICR比率中出现局部最大值的表面电荷密度越高。

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