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A ONE-DIMENSIONAL MODEL CAPTURING SELECTIVE ION TRANSPORT EFFECTS IN NANOFLUIDIC DEVICES

机译:纳米流体装置中捕获选择性离子输送效应的一维模型

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This paper presents a numerical model of one-dimensional, steady-state, multi-species, ion transport along a channel of variable width and depth. It is intended for computationally efficient simulation of devices with large variations in characteristic length scale-for example those incorporating both micro- and nanochannels. The model represents both volume charge in the fluid and surface charge on the channel walls as equivalent linear charge densities. The relative importance of the surface terms is captured by a so-called "overlap parameter" that accounts for electric double-layer effects, such as selective ion transport. Scale transitions are implemented using position-dependent area and perimeter functions. The model is validated against experimental results previously reported in the literature. In particular, model predictions are compared to measurements of fluorescent tracer species in nanochannels, of nanochannel conductivity, and of the relative enhancement and depletion of negatively and positively charged tracer species in a device combining micro-and nanochannels. Surface charge density is a critical model parameter, but in practice it is often poorly known. Therefore it is also shown how the model may be used to estimate surface charge density based on measurements. In two of the three experiments studied the externally applied voltage is low, and excellent results are achieved with electroosmotic terms neglected. In the remaining case a large external potential (~ 1 kV) is applied, necessitating an additional adjustable parameter to capture convective transport. With this addition, model performance is excellent.
机译:本文呈现了一维,稳态,多物种,沿着可变宽度和深度的通道的离子传输的数值模型。它旨在用于计算具有特征长度差异的大变化的装置的计算上的仿真 - 例如包含微型和纳米通道的那些。该模型表示流体中的体积电荷和沟道壁上的表面电荷,作为等效的线性电荷密度。表面术语的相对重要性被所谓的“重叠参数”捕获,该“重叠参数”占用于电双层效应,例如选择性离子传输。使用位置相关区域和周边函数实现缩放转换。该模型针对先前在文献中报告的实验结果验证。特别地,将模型预测与纳米通道的荧光示踪剂物种的测量进行比较,纳米通道导电性和在组合微型和纳米的装置中的带有带正电荷的示踪剂种类的相对增强和耗尽。表面电荷密度是一个关键的模型参数,但实际上它通常已知难以知。因此,还示出了该模型如何用于估计基于测量的表面电荷密度。在研究中的两个实验中,研究外部施加的电压低,并且通过忽略的电渗术语实现了优异的结果。在其余的情况下,应用大的外部电位(〜1kV),需要额外的可调参数来捕获对流传输。通过此添加,模型性能优异。

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