Organic and Biological Mass Spectrometry Group, Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831-6131, USA.
Rapid Commun Mass Spectrom. 2010 May 15;24(9):1327-34. doi: 10.1002/rcm.4522.
An emitter electrode with an electroactive poly(pyrrole) (PPy) polymer film coating was constructed for use in electrospray ionization mass spectrometry (ESI-MS). The PPy film acted as a surface-attached redox buffer limiting the interfacial potential of the emitter electrode. While extensive oxidation of selected analytes (reserpine and amodiaquine) was observed in positive ion mode ESI using a bare metal (gold) emitter electrode, the oxidation was suppressed for these same analytes when using the PPy-coated electrode. A semi-quantitative relationship between the rate of oxidation observed and the interfacial potential of the emitter electrode was shown. The redox buffer capacity, and therefore the lifetime of the redox buffering effect, correlated with the oxidation potential of the analyte and with the magnitude of the film charge capacity. Online reduction of the PPy polymer layer using negative ion mode ESI between analyte injections was shown to successfully restore the redox buffering capacity of the polymer film to its initial state.
构建了带有电活性聚吡咯(PPy)聚合物涂层的发射器电极,用于电喷雾电离质谱(ESI-MS)。PPy 薄膜充当表面附着的氧化还原缓冲剂,限制了发射器电极的界面电势。在用裸露的金属(金)发射器电极进行正离子模式 ESI 时,观察到选定分析物(利血平和阿莫地喹)的广泛氧化,但在使用 PPy 涂层电极时,这些相同的分析物的氧化受到抑制。观察到的氧化速率与发射器电极的界面电势之间存在半定量关系。氧化还原缓冲容量,因此氧化还原缓冲作用的寿命,与分析物的氧化电位以及膜电荷容量的大小相关。在线使用负离子模式 ESI 在分析物注射之间对 PPy 聚合物层进行还原,成功地将聚合物膜的氧化还原缓冲容量恢复到初始状态。