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用于电喷雾质谱的控制电位电化学-电喷雾发射器的研究与应用

Study and application of a controlled-potential electrochemistry-electrospray emitter for electrospray mass spectrometry.

作者信息

Kertesz Vilmos, Van Berkel Gary J, Granger Michael C

机构信息

Organic and Biological Mass Spectrometry Group, Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831-6131, USA.

出版信息

Anal Chem. 2005 Jul 15;77(14):4366-73. doi: 10.1021/ac0503411.

Abstract

This paper discusses continued studies and new analytical applications of a recently developed three-electrode controlled-potential electrochemical cell incorporated into an electrospray ion source (Van Berkel, G. J.; Asano, K. G.; Granger, M. C. Anal. Chem. 2004, 76, 1493-1499.). This cell contains a porous flow-through working electrode (i.e., the emitter electrode) with high surface area and auxiliary electrodes with small total surface area that are incorporated into the emitter electrode circuit to control the electrochemical reactions of analytes in the electrospray emitter. The current at the working and auxiliary electrodes, and current at the grounding points upstream and downstream of the emitter in the electrospray circuit, were recorded in this study, along with the respective mass spectra of model compound reserpine, under various operating conditions to better understand the electrochemical and electrospray operation of this emitter cell. In addition to the ability to control analyte oxidation in positive ion mode (or reduction in negative ion mode) in the electrospray emitter, this emitter cell system was shown to provide the ability to efficiently reduce analytes in positive ion mode and oxidize analytes in negative ion mode. This was demonstrated by the reduction of methylene blue in positive ion mode and oxidation of 3,4-dihydroxybenzoic acid in negative ion mode. Also, the ability to control electrochemical reactions via potential control was used to selectively ionize (oxidize) analytes with different standard electrochemical potentials within mixtures to different charge states to overcome overlapping molecular ion isotopic clusters. The analytical benefit of this ability was illustrated using a mixture of nickel and cobalt octaethylporphyrin.

摘要

本文讨论了一种最近开发的、集成到电喷雾离子源中的三电极控制电位电化学池的持续研究和新的分析应用(Van Berkel, G. J.; Asano, K. G.; Granger, M. C. Anal. Chem. 2004, 76, 1493 - 1499.)。该电池包含一个具有高表面积的多孔流通式工作电极(即发射极)和总表面积较小的辅助电极,这些辅助电极被并入发射极电路,以控制电喷雾发射极中分析物的电化学反应。在本研究中,记录了工作电极和辅助电极处的电流,以及电喷雾电路中发射极上游和下游接地处的电流,同时还记录了模型化合物利血平在各种操作条件下的相应质谱,以便更好地理解该发射极电池的电化学和电喷雾操作。除了能够在电喷雾发射极中控制正离子模式下分析物的氧化(或负离子模式下的还原)外,该发射极电池系统还显示出能够在正离子模式下有效还原分析物以及在负离子模式下氧化分析物的能力。通过在正离子模式下还原亚甲基蓝和在负离子模式下氧化3,4 - 二羟基苯甲酸证明了这一点。此外,通过电位控制来控制电化学反应的能力被用于选择性地将混合物中具有不同标准电化学电位的分析物电离(氧化)到不同的电荷状态,以克服重叠的分子离子同位素簇。使用镍和钴八乙基卟啉的混合物说明了这种能力的分析优势。

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