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Electrochemical detection method for nonelectroactive and electroactive analytes in microchip electrophoresis

机译:微芯片电泳中非电活性和电活性分析物的电化学检测方法

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摘要

In this work, we establish an indirect amperometric detection method via mounting a single carbon fiber disk working electrode in the end part of a microchannel. This in-channel configuration for microchip capillary electrophoresis brings about that the potential of the working electrode in the case of electrochemical reduction reaction is coupled by the separation electric field, while the potential of the working electrode in the case of electrochemical oxidation reaction is not coupled by the separation electric field. Such a special performance provides a convenient and sensitive approach for indirectly detecting nonelectroactive analytes that relies on amperometric response of dissolved oxygen in solution and directly detecting electroactive analytes based on their own amperometric response on the carbon fiber electrode. This method has shown its essential importance in the analysis of inorganic cations, biomolecules, and electroosmotic flow rates. Based on preliminary results, a detection limit of 1.0 muM for K+ and Na+ have been achieved.
机译:在这项工作中,我们通过在微通道的末端安装单个碳纤维盘工作电极,建立了一种间接安培检测方法。这种用于微芯片毛细管电泳的通道内配置使得在电化学还原反应的情况下工作电极的电位通过分离电场耦合,而在电化学氧化反应的情况下工作电极的电位不耦合。通过分离电场。这样的特殊性能为间接检测依赖于溶液中溶解氧的安培响应的非电活性分析物提供了便捷而灵敏的方法,并基于碳纤维电极上自身的安培响应直接检测电活性分析物。该方法在分析无机阳离子,生物分子和电渗流量中已显示出至关重要的重要性。根据初步结果,已实现K +和Na +的检出限为1.0μM。

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