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Visualization of Sampling and Ionization Processes in Scanning Probe Electrospray Ionization Mass Spectrometry

机译:扫描探针电喷雾电离质谱中采样和电离过程的可视化

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摘要

Ambient sampling and ionization techniques based on direct liquid extraction and electrospray ionization are of great value for rapid analysis and mass spectrometry imaging. Scanning probe electrospray ionization (SPESI) enables the sampling and ionization of analyte molecules in a solid material using a liquid bridge and electrospray, respectively, from a single capillary probe. To further improve SPESI, it is essential to understand the dynamic behavior of nanoliter volumes of liquids during sampling and ionization. In this study, the dynamic formation and breakage of the liquid bridge and the subsequent electrospray ionization were investigated by measuring the displacement of the capillary probe using a new optical technique. Measurements revealed that both the time from the formation of the liquid bridge to its breakage and the time from the breakage of the liquid bridge to the detection of analyte ions were correlated with the physical properties of the solvent. It was also found that both of these times were positively correlated with the flow rate. These results will not only lead to the improvement of sampling and ionization efficiencies but also afford a greater understanding of the physicochemical properties of charged nanoliter volumes of liquids.
机译:基于直接液体萃取和电喷雾电离的环境采样和电离技术对于快速分析和质谱成像具有重要价值。扫描探针电喷雾电离(SPESI)可以使用液桥和电喷雾分别从单个毛细管探针对固体材料中的分析物分子进行采样和电离。为了进一步改善SPESI,必须了解在采样和电离过程中纳升体积的液体的动态行为。在这项研究中,通过使用一种新的光学技术测量毛细管探针的位移,研究了液桥的动态形成和断裂以及随后的电喷雾电离。测量表明,从液桥形成到破裂的时间以及从液桥破裂到分析物离子检测的时间都与溶剂的物理性质相关。还发现这两个时间均与流速成正相关。这些结果不仅将导致采样效率和电离效率的提高,而且将使人们对带电纳升体积的液体的理化特性有更深入的了解。

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