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Theory and Experiments of Transport at Channel Microband Electrodes Under Laminar Flow. 3. Electrochemical Detection at Electrode Arrays under Steady State

机译:层流下通道微带电极传输的理论和实验。 3.稳态下电极阵列的电化学检测

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Microband arrays improve the analytical performance and information content of electrochemical detection in flow channel relative to single-electrode configurations. However, exploiting their full advantages requires a detailed understanding of the properties of arrays, which depend on their geometry and on the hydrodynamic regimes established inside the microfluidic channel. This paper investigates the influence of two main operating situations (sequential and coupling regimes) on steady-state amperometric responses of microband arrays performing under laminar flow conditions. Simulations and experimental measurements showed that the resulting properties of the arrays are a function of the number of electrodes and average ratio between gaps and electrode widths, whether the layout of the arrays is regular or not. Since the contribution of each electrode can be finely tailored, this allows the arrays to be designed and adapted to a wide variety of experimental demands.
机译:相对于单电极配置,微带阵列提高了流道中电化学检测的分析性能和信息含量。但是,要充分利用阵列的优势,需要对阵列的属性有详细的了解,这取决于阵列的几何形状以及微流控通道内部建立的流体力学状态。本文研究了两种主要操作情况(顺序和耦合方式)对在层流条件下执行的微带阵列的稳态安培响应的影响。仿真和实验测量表明,无论阵列布局是否规则,阵列的最终性能都是电极数量以及间隙和电极宽度之间的平均比率的函数。由于可以精细地调整每个电极的作用,因此可以设计阵列并使其适应各种实验需求。

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