Liu Yao-Min, Perry Richard H
Department of Chemistry, University of Illinois, Urbana, IL, 61801, USA.
J Am Soc Mass Spectrom. 2015 Oct;26(10):1702-12. doi: 10.1007/s13361-015-1224-9. Epub 2015 Aug 27.
On-line coupling of electrochemistry (EC) to mass spectrometry (MS) is a powerful approach for identifying intermediates and products of EC reactions in situ. In addition, EC transformations have been used to increase ionization efficiency and derivatize analytes prior to MS, improving sensitivity and chemical specificity. Recently, there has been significant interest in developing paper-based electroanalytical devices as they offer convenience, low cost, versatility, and simplicity. This report describes the development of tubular and planar paper-based electrochemical cells (P-EC) coupled to sonic spray ionization (SSI) mass spectrometry (P-EC/SSI-MS). The EC cells are composed of paper sandwiched between two mesh stainless steel electrodes. Analytes and reagents can be added directly to the paper substrate along with electrolyte, or delivered via the SSI microdroplet spray. The EC cells are decoupled from the SSI source, allowing independent control of electrical and chemical parameters. We utilized P-EC/SSI-MS to characterize various EC reactions such as oxidations of cysteine, dopamine, polycyclic aromatic hydrocarbons, and diphenyl sulfide. Our results show that P-EC/SSI-MS has the ability to increase ionization efficiency, to perform online EC transformations, and to capture intermediates of EC reactions with a response time on the order of hundreds of milliseconds. The short response time allowed detection of a deprotonated diphenyl sulfide intermediate, which experimentally confirms a previously proposed mechanism for EC oxidation of diphenyl sulfide to pseudodimer sulfonium ion. This report introduces paper-based EC/MS via development of two device configurations (tubular and planar electrodes), as well as discusses the capabilities, performance, and limitations of the technique.
电化学(EC)与质谱(MS)的在线联用是一种原位鉴定EC反应中间体和产物的强大方法。此外,EC转化已被用于提高电离效率,并在质谱分析前对分析物进行衍生化处理,从而提高灵敏度和化学特异性。最近,人们对开发基于纸的电分析装置产生了浓厚兴趣,因为它们具有方便、低成本、多功能和简单的特点。本报告描述了与超声喷雾电离(SSI)质谱联用的管状和平面型基于纸的电化学电池(P-EC)(P-EC/SSI-MS)的开发。EC电池由夹在两个网状不锈钢电极之间的纸组成。分析物和试剂可以与电解质一起直接添加到纸质基底上,或者通过SSI微滴喷雾输送。EC电池与SSI源解耦,允许独立控制电学和化学参数。我们利用P-EC/SSI-MS对各种EC反应进行表征,如半胱氨酸、多巴胺、多环芳烃和二苯硫醚的氧化反应。我们的结果表明,P-EC/SSI-MS有能力提高电离效率、进行在线EC转化,并以数百毫秒量级的响应时间捕获EC反应的中间体。短响应时间使得能够检测到去质子化的二苯硫醚中间体,这在实验上证实了先前提出的二苯硫醚EC氧化为假二聚体锍离子的机制。本报告通过开发两种装置配置(管状和平面电极)介绍了基于纸的EC/MS,并讨论了该技术的能力、性能和局限性。