Tea Research Institute, Chinese Academy of Agricultural Sciences, 9 South Meiling Road, Hangzhou, 310008, People's Republic of China.
Key Laboratory of Tea Quality and Safety Control, Ministry of Agriculture and Rural Affairs, 9 South Meiling Road, Hangzhou, 310008, People's Republic of China.
J Am Soc Mass Spectrom. 2019 Oct;30(10):2060-2067. doi: 10.1007/s13361-019-02273-9. Epub 2019 Jul 23.
The in-source collision-induced dissociation (CID) and MS/MS mass spectra of deprotonated tolfenpyrad and tebufenpyrad both showed an unusual fragment ion at m/z 187, but its fragmentation pattern and structure could not be explained by logical neutral losses. Accurate mass measurement indicated that the mass difference between this fragment ion and the dominant fragment ion at m/z 143 equaled to a carbon dioxide (CO) molecule. The isolation of the fragment ion m/z 143 in the mass analyzer could spontaneously give rise to the ion m/z 187. The Gibbs free energy of carbon dioxide addition to deprotonated pyrazole ion was significantly negative from the computational results. According to these results, we derived a proposal for the formation and structure of the ion m/z 187, which was an attachment of molecular carbon dioxide to the fragment ion m/z 143 to produce a carboxylate anion. The trace carbon dioxide was speculated to be derived from the residual atmosphere or collision gas in the instrument. This study is valuable for the qualitative and quantitative mass spectrometry analysis of pesticides containing the pyrazole functional group.
去质子化的噻虫啉和噻虫嗪的源内碰撞诱导解离(CID)和 MS/MS 质谱均显示出一个异常的碎片离子,质荷比为 m/z 187,但无法通过合理的中性丢失来解释其碎裂模式和结构。精确质量测量表明,该碎片离子与质荷比为 m/z 143 的主要碎片离子之间的质量差等于一个二氧化碳(CO)分子。在质量分析器中对 m/z 143 碎片离子的隔离可以自发产生 m/z 187 离子。从计算结果来看,二氧化碳加合至去质子化吡唑离子的吉布斯自由能明显为负。根据这些结果,我们提出了离子 m/z 187 的形成和结构的假设,这是分子二氧化碳附着在 m/z 143 的碎片离子上,生成羧酸根阴离子。痕量的二氧化碳推测来自仪器中的残留气氛或碰撞气体。本研究对于含有吡唑官能团的农药的定性和定量质谱分析具有重要价值。