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A Setup for the Coupling of a Thin-Layer Electrochemical Flow Cell to Electrospray Mass Spectrometry

机译:薄层电化学流通池与电喷雾质谱耦合的装置

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A novel setup for the coupling of a commercially available thin-layer cell to electrospray mass spectrometry (ESI-MS) which allows the electrochemical reactions at the counter electrode to be straightforwardly separated from the flow into the mass spectrometer has been developed. In this way, interferences from reaction products formed at the counter electrode can be minimized. This reduces the risk of changes in the mass spectra as a result of electrochemical reactions in the solution. The described setup also enables the working electrode to be positioned close to the electrospray (ESI) emitter without the need for a grounding point or a long transfer line between the electrochemical cell and the electrospray emitter. By decoupling the electrochemical reactions in the flow cell and those in the electrospray emitter, improved facilities for studies of electrochemical reactions are obtained through a better control of the potential of the working electrode. The setup has been used to study the oxidation of a drug (Olsalazine), which previously has been found to involve chemical follow-up reactions. It is also demonstrated that uncharged thiols can be detected in ESI-MS after spontaneous adsorption on a gold working electrode, followed by oxidative desorption to yield sulfinates or sulfonates. This adsorption and potential-controlled desorption has been used for the preconcentration of micromolar concentrations of 1-hexanethiol as well as for desalting of solutions containing micromolar concentrations of thiols. The results indicate that the present online coupling of an electrochemical cell to ESI-MS provides promising possibilities for sample preconcentration, matrix exchange (including desalting), and ionization of neutral compounds, such as thiols.
机译:已经开发出一种新颖的装置,用于将市售的薄层电池耦合到电喷雾质谱仪(ESI-MS),该装置可以使对电极上的电化学反应直接与进入质谱仪的流体分开。这样,可以使在对电极处形成的反应产物的干扰最小。这降低了由于溶液中的电化学反应而导致质谱变化的风险。所描述的设置还使工作电极可以放置在靠近电喷雾(ESI)发射器的位置,而无需接地点或电化学电池与电喷雾发射器之间的长传输线。通过使流动池中的电化学反应与电喷雾发射器中的电化学反应脱钩,可以通过更好地控制工作电极的电势来获得用于研究电化学反应的改进设施。该装置已用于研究药物(奥沙拉嗪)的氧化,以前发现该药物涉及化学后续反应。还证明在自发吸附在金工作电极上,然后进行氧化脱附以生成亚磺酸盐或磺酸盐后,可以在ESI-MS中检测到不带电荷的硫醇。这种吸附和电势受控的解吸已用于微摩尔浓度的1-己硫醇的预浓缩以及用于脱盐的溶液,该溶液的浓度为微摩尔浓度的硫醇。结果表明,目前电化学电池与ESI-MS的在线耦合为样品预浓缩,基质交换(包括脱盐)和中性化合物(例如硫醇)的电离提供了有希望的可能性。

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