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层流条件下通道微带电极传输的理论与实验。2. 稳态下双微带组件的电化学状态。

Theory and experiments of transport at channel microband electrodes under laminar flows. 2. Electrochemical regimes at double microband assemblies under steady state.

作者信息

Amatore Christian, Da Mota Nicolas, Lemmer Célia, Pebay Cécile, Sella Catherine, Thouin Laurent

机构信息

Département de Chimie, Ecole Normale Supérieure, UMR CNRS-ENS-UPMC 8640 Pasteur, 24 rue Lhomond, F-75231 Paris Cedex 05, France.

出版信息

Anal Chem. 2008 Dec 15;80(24):9483-90. doi: 10.1021/ac801605v.

Abstract

The development of any particular analytical or preparative applications using electrochemical techniques in microfluidic devices requires integration of microelectrodes. This involves detailed predictions for optimizing the design of devices and selecting the best hydrodynamic conditions. For this purpose, we undertook a series of works aimed at a precise investigation of mass transport near electrodes with focus on analytical measurements. Part I of this series (Anal. Chem. 2007, 79, 8502-8510) evaluated the common case of a single microband electrode embedded within a microchannel under laminar flow. The present work (Part 2) investigated the case of a pair of microband electrodes operating either in generator-generator or generator-collector modes. The influence of the confining effect and flow velocity on the amperometric responses was examined on the basis of numerical simulations under steady-state regime. Several situations were identified, each of them corresponding to specific interactions taking place between the electrodes. Related conditions were extracted to establish a zone diagram describing all the situations. These predictions were systematically validated by experimental measurements. The results show that amperometric detections within microchannels can be performed at dual electrodes with higher analytical performances than at single ones.

摘要

在微流控装置中使用电化学技术开发任何特定的分析或制备应用都需要集成微电极。这涉及到对优化装置设计和选择最佳流体动力学条件的详细预测。为此,我们开展了一系列工作,旨在精确研究电极附近的传质情况,重点是分析测量。本系列的第一部分(《分析化学》2007年,79卷,8502 - 8510页)评估了层流条件下嵌入微通道内的单个微带电极的常见情况。当前工作(第二部分)研究了一对微带电极以发生器 - 发生器或发生器 - 收集器模式运行的情况。基于稳态条件下的数值模拟,研究了限制效应和流速对安培响应的影响。确定了几种情况,每种情况对应电极之间发生的特定相互作用。提取了相关条件以建立描述所有情况的区域图。这些预测通过实验测量得到了系统验证。结果表明,与单电极相比,在微通道内的双电极上进行安培检测可以获得更高的分析性能。

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