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一种用于强大、便捷且灵活的质谱分析的3D打印负压电喷雾电离源。

A 3D-printed sub-atmospheric pressure electrospray ionization source for robust, facile, and flexible mass spectrometry analysis.

作者信息

Hou Mulang, Sun Shuang, Zhu Yanping, Yu Quan

机构信息

Shenzhen International Graduate School, Tsinghua University, Shenzhen, 518055, China.

出版信息

Anal Bioanal Chem. 2023 Nov;415(26):6441-6448. doi: 10.1007/s00216-023-04920-3. Epub 2023 Aug 29.

Abstract

The operation and performance of electrospray ionization (ESI) is affected by the surrounding environment. In this study, a compact sub-atmospheric pressure ESI (SAP-ESI) source was designed and fabricated using the 3D printing method. This source has a simple structure and is easy to operate, as the sample solution and auxiliary gas are continuously sucked into the source through the pressure difference. The compact and enclosed ionization chamber can reduce the fluctuation of the surrounding gas flow to ensure a remarkably stable (< 3%) electrospray. Moreover, the source can offer variable SAP conditions for ESI analysis. The yield of analyte ions increases with decreasing pressure, while the production of background ions is suppressed under these conditions. In the analysis of protein samples, SAP-ESI can increase the yield and charge state of ions, which may be due to the reduction of proton transfer between charged proteins and surrounding gas. The SAP-ESI source was then used to continuously monitor the extract aqueous solution of tea leaves, and to detect the carbendazim residues on the apple surface by coupling with the liquid extraction surface analysis technique. Experimental results demonstrate that the developed SAP-ESI is a stable, practical, and versatile ionization technique.

摘要

电喷雾电离(ESI)的操作和性能受周围环境影响。在本研究中,采用3D打印方法设计并制造了一种紧凑型亚大气压ESI(SAP-ESI)源。该源结构简单,易于操作,因为样品溶液和辅助气体通过压力差连续吸入源中。紧凑且封闭的电离室可减少周围气流的波动,以确保电喷雾非常稳定(<3%)。此外,该源可为ESI分析提供可变的SAP条件。分析物离子的产率随压力降低而增加,而在这些条件下背景离子的产生受到抑制。在蛋白质样品分析中,SAP-ESI可提高离子的产率和电荷状态,这可能是由于带电蛋白质与周围气体之间质子转移的减少。然后,将SAP-ESI源用于连续监测茶叶提取水溶液,并通过与液相萃取表面分析技术联用检测苹果表面的多菌灵残留。实验结果表明,所开发的SAP-ESI是一种稳定、实用且通用的电离技术。

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