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氮实时直接分析质谱的离子源作为高效反应室:活性氧物质的生成。

The Ion Source of Nitrogen Direct Analysis in Real-Time Mass Spectrometry as a Highly Efficient Reactor: Generation of Reactive Oxygen Species.

机构信息

Changchun University of Chinese Medicine, Changchun, 130117, China.

Pharmaron Beijing Co., Ltd., Beijing, 100176, China.

出版信息

J Am Soc Mass Spectrom. 2019 Apr;30(4):581-587. doi: 10.1007/s13361-019-02132-7. Epub 2019 Feb 19.

Abstract

An innovative strategy for sustainably active oxygen capture using nitrogen (N) instead of helium (He) as direct analysis in real-time (DART) gas is demonstrated in this work. DART MS was carried out to analyze different polarity compounds including organophosphorus pesticides, amino acids, hormones, and poly brominated diphenyl ethers by using He and N as DART gas, respectively. The unexpectedly characteristic ionization reactions, including replacement reaction where the sulfur atom of P=S group, were replaced by oxygen atom, oxidation ([M + nO + H] or [M + nO-H] (n = 1, 2, 3, 4, 5)), and hydrogen loss (loss of two hydrogens) rapidly occurred in situ in the presence of N under ambient conditions without any additives. The reaction mechanisms were proposed and further confirmed by high-resolution tandem mass spectrometry. Our study under high temperature and high voltage provides a powerful tool for generating unique ionic species that may be difficult to form by other means, which also creates favorable conditions for the future study of the mechanism of DART MS. Graphical Abstract.

摘要

本工作展示了一种使用氮气(N)而不是氦气(He)作为直接实时分析(DART)气体来可持续地主动捕获活性氧的创新策略。使用 He 和 N 分别作为 DART 气体,通过 DART-MS 分析了不同极性的化合物,包括有机磷农药、氨基酸、激素和多溴二苯醚。在环境条件下,无需任何添加剂,N 存在时会迅速发生意想不到的特征性离子化反应,包括 P=S 基团中的硫原子被氧原子取代的取代反应、氧化反应([M + nO + H] 或 [M + nO-H](n = 1,2,3,4,5))和氢损失(损失两个氢)。通过高分辨率串联质谱提出并进一步证实了反应机制。我们在高温高压下的研究为生成独特的离子物种提供了有力工具,这些离子物种可能难以通过其他方式形成,也为未来研究 DART-MS 的机制创造了有利条件。

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