阐明离子抑制在二次电喷雾电离中的作用。

Elucidating the Role of Ion Suppression in Secondary Electrospray Ionization.

作者信息

Wüthrich Cedric, Giannoukos Stamatios, Zenobi Renato

机构信息

Department of Chemistry and Applied Biosciences, ETH Zürich, 8093 Zürich, Switzerland.

出版信息

J Am Soc Mass Spectrom. 2023 Nov 1;34(11):2498-2507. doi: 10.1021/jasms.3c00219. Epub 2023 Oct 16.

Abstract

Ion suppression is a known matrix effect in electrospray ionization (ESI), ambient pressure chemical ionization (APCI), and desorption electrospray ionization (DESI), but its characterization in secondary electrospray ionization (SESI) is lacking. A thorough understanding of this effect is crucial for quantitative applications of SESI, such as breath analysis. In this study, gas standards were generated by using an evaporation-based system to assess the susceptibility and suppression potential of acetone, deuterated acetone, deuterated acetic acid, and pyridine. Gas-phase effects were found to dominate ion suppression, with pyridine exhibiting the most significant suppressive effect, which is potentially linked to its gas-phase basicity. The impact of increased acetone levels on the volatiles from exhaled breath condensate was also examined. In humid conditions, a noticeable decrease in intensity of approximately 30% was observed for several features at an acetone concentration of 1 ppm. Considering that this concentration is expected for breath analysis, it becomes crucial to account for this effect when SESI is utilized to quantitatively determine specific compounds.

摘要

离子抑制是电喷雾电离(ESI)、常压化学电离(APCI)和解吸电喷雾电离(DESI)中一种已知的基质效应,但在二次电喷雾电离(SESI)中的表征尚缺。深入了解这种效应对于SESI的定量应用(如呼气分析)至关重要。在本研究中,通过使用基于蒸发的系统生成气体标准物,以评估丙酮、氘代丙酮、氘代乙酸和吡啶的敏感性及抑制潜力。发现气相效应主导离子抑制,吡啶表现出最显著的抑制作用,这可能与其气相碱性有关。还研究了丙酮水平增加对呼出气冷凝物中挥发性物质的影响。在潮湿条件下,当丙酮浓度为1 ppm时,观察到几个特征的强度明显下降约30%。鉴于呼气分析预期会有此浓度,在利用SESI定量测定特定化合物时考虑这种效应变得至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0d9/10623576/bd87c610496c/js3c00219_0001.jpg

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