Decoding Voltammograms at the Molecular Frontier: Integration of Voltammetry and Mass Spectrometry

IF 6.1 Q1 CHEMISTRY, MULTIDISCIPLINARY Chemistry methods : new approaches to solving problems in chemistry Pub Date : 2024-04-04 DOI:10.1002/cmtd.202400003
Adarsh Koovakattil Surendran, Jana Roithová
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Abstract

Electrochemical reactions are better understood by gaining insight into the molecular transformations at the electrodes. This paper introduces a straightforward experimental arrangement in which the voltammetry experiment in a standard electrochemical cell integrates with online electrospray-ionization mass-spectrometry. The procedure allows for monitoring of the ions produced at the working electrode. The ionic species sampling is facilitated by a silica capillary embedded in the working electrode and connected directly to the electrospray ionization source. This integration configures real-time monitoring of the ions produced at the working electrode, enhancing our knowledge of the electrochemical process. The methodology is thoroughly described and exemplified by monitoring the reactive intermediates and products that arise during the electrochemical oxidation of carbazole. This design provides an opportunity to study intermediates in electrochemical reactions with advanced mass spectrometry methods such as ion mobility separation or ion spectroscopy.

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分子前沿的伏安图解码:伏安法与质谱法的整合
通过深入了解电极上的分子转化,可以更好地理解电化学反应。本文介绍了一种直接的实验安排,即在标准电化学电池中将伏安法实验与在线电喷雾电离质谱法相结合。该程序可监测工作电极上产生的离子。嵌入工作电极并直接连接到电喷雾离子源的二氧化硅毛细管为离子物种采样提供了便利。这种集成配置可对工作电极上产生的离子进行实时监测,从而增强我们对电化学过程的了解。通过监测咔唑电化学氧化过程中产生的反应性中间产物和产物,对该方法进行了详尽的描述和举例说明。这种设计为利用离子迁移率分离或离子光谱等先进的质谱方法研究电化学反应中的中间产物提供了机会。
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