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采用常压火焰离子化的直接便捷质谱采样

Direct and Convenient Mass Spectrometry Sampling with Ambient Flame Ionization.

作者信息

Liu Xiao-Pan, Wang Hao-Yang, Zhang Jun-Ting, Wu Meng-Xi, Qi Wan-Shu, Zhu Hui, Guo Yin-Long

机构信息

State Key Laboratory of Organmetallic Chemistry and National Center for Organic Mass Spectrometry in Shanghai, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 345 Lingling Road, Shanghai, 200032 (China).

出版信息

Sci Rep. 2015 Nov 19;5:16893. doi: 10.1038/srep16893.

Abstract

Recent innovations in ambient ionization technology for the direct analysis of various samples in their native environment facilitate the development and applications of mass spectrometry in natural science. Presented here is a novel, convenient and flame-based ambient ionization method for mass spectrometric analysis of organic compounds, termed as the ambient flame ionization (AFI) ion source. The key features of AFI ion source were no requirement of (high) voltages, laser beams and spray gases, but just using small size of n-butane flame (height approximately 1 cm, about 500 (o)C) to accomplish the rapid desorption and ionization for direct analysis of gaseous-, liquid- and solid-phase organic compounds, as well as real-world samples. This method has high sensitivity with a limit of detection of 1 picogram for propyphenazone, which allows consuming trace amount of samples. Compared to previous ionization methods, this ion source device is extremely simple, maintain-free, low-cost, user-friendly so that even an ordinary lighter (with n-butane as fuel) can achieve efficient ionization. A new orientation to mass spectrometry ion source exploitation might emerge from such a convenient, easy and inexpensive AFI ion source.

摘要

用于在自然环境中直接分析各种样品的常压电离技术的最新创新推动了质谱技术在自然科学领域的发展与应用。本文介绍了一种新颖、便捷且基于火焰的常压电离方法,用于有机化合物的质谱分析,称为常压火焰电离(AFI)离子源。AFI离子源的关键特性在于无需(高)电压、激光束和喷雾气体,仅使用小尺寸的正丁烷火焰(高度约1厘米,约500℃)即可完成对气相、液相和固相有机化合物以及实际样品的快速解吸和电离,以实现直接分析。该方法具有高灵敏度,对保泰松的检测限为1皮克,能够消耗痕量样品。与先前的电离方法相比,这种离子源装置极其简单、无需维护、成本低廉且用户友好,以至于即使是普通打火机(以正丁烷为燃料)也能实现高效电离。这样一种便捷、简易且廉价的AFI离子源可能会为质谱离子源的开发带来新的方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4271/4652273/40a6c2475566/srep16893-f1.jpg

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