电化学传感器中扩散、对流和迁移过程的计算流体动力学模型及量纲分析

D. Barak-Shinar, M. Rosenfeld, S. Abboud
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引用次数: 1

摘要

电化学安培传感器监测通过电化学电池的电流,并测量生物或化学物质的浓度。电化学生物传感器领域的实验工作是非常有趣的,但理论建模对这些结果的支持还没有得到很好的研究。利用理论建模来理解复杂的物理现象似乎具有挑战性,并且可能对电化学传感器的优化设计具有重要意义。本研究提出了一种独特的方法来研究电化学传感器和电极相邻层附近的三个传质过程(扩散、对流和迁移)。建立了电化学柱状流动池的三维模型,并对扩散、对流和迁移进行了计算流体动力学模拟。用数值模型来表示物理现象,使预测系统随时间变化的行为成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computational fluid dynamic model and dimensional analysis of diffusion, convection and migration processes in electrochemical sensors
Electrochemical amperometric transducers monitor the electric current through the electrochemical cell and measure the concentration of biological or chemical available species. Experimental work in the field of electrochemical biosensors is extremely interesting, yet the support of these results by theoretical modeling is not well investigated. Using theoretical modeling to understand the physical complex phenomena seems to be challenging and might have significant implications on the optimal design of electrochemical sensors. The present study presents a unique approach for investigating the three processes of mass transfer (diffusion, convection and migration) in the vicinity of an electrochemical sensor and the adjacent layer of the electrode. A 3-D model of the electrochemical cylindrical flow cell with computational fluid dynamic simulations of time dependent diffusion, convection and migration are used. The representation of the physical phenomena by the numerical models makes it possible to predict the time-dependent behavior of the system.
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