Research Center for Health and Nutrition, Shanghai University of Traditional Chinese Medicine, 1200 Cailun Road, Shanghai, 201203, China.
J Am Soc Mass Spectrom. 2011 Oct;22(10):1839-50. doi: 10.1007/s13361-011-0193-x. Epub 2011 Jul 6.
When using tetrachloromethane as the reagent gas in gas chromatography-ion trap mass spectrometry equipped with hybrid ionization source, the cation CCl(3)(+) was generated in high abundance and further gas-phase experiments showed that such an electron-deficient reagent ion CCl(3)(+) could undergo interesting ion-molecule reactions with various volatile organic compounds, which not only present some informative gas-phase reactions, but also facilitate qualitative analysis of diverse volatile compounds by providing unique mass spectral data that are characteristic of particular chemical structures. The ion-molecule reactions of the reagent ion CCl(3)(+) with different types of compounds were studied, and results showed that such reactions could give rise to structurally diagnostic ions, such as M+CCl(3) - HCl for aromatic hydrocarbons, M - OH for saturated cyclic ether, ketone, and alcoholic compounds, M - H ion for monoterpenes, M(·+) for sesquiterpenes, M - CH(3)CO for esters, as well as the further fragment ions. The mechanisms of ion-molecule reactions of aromatic hydrocarbons, aliphatic ketones and alcoholic compounds with the reagent ion CCl(3)(+) were investigated and proposed according to the information provided by MS/MS experiments and theoretical calculations. Then, this method was applied to study volatile organic compounds in Dendranthema indicum var. aromaticum and 20 compounds, including monoterpenes and their oxygen-containing derivatives, aromatic hydrocarbon and sesquiterpenes were identified using such ion-molecule reactions. This study offers a perspective and an alternative tool for the analysis and identification of various volatile compounds.
当在配备混合电离源的气相色谱-离子阱质谱中使用四氯化碳作为试剂气体时,会生成大量的正离子 CCl(3)(+),进一步的气相实验表明,这种缺电子试剂离子 CCl(3)(+)可以与各种挥发性有机化合物发生有趣的离子-分子反应,这些反应不仅提供了一些有信息价值的气相反应,而且通过提供独特的质谱数据,有助于对各种挥发性化合物进行定性分析,这些数据特征特定的化学结构。研究了试剂离子 CCl(3)(+)与不同类型化合物的离子-分子反应,结果表明,这些反应可以产生结构诊断离子,如芳香烃的 M+CCl(3) - HCl、饱和环状醚、酮和醇类化合物的 M - OH、单萜类化合物的 M - H离子、倍半萜类化合物的 M(·+)、酯类化合物的 M - CH(3)CO以及进一步的碎片离子。根据 MS/MS 实验和理论计算提供的信息,研究并提出了芳香烃、脂肪酮和醇类化合物与试剂离子 CCl(3)(+)的离子-分子反应机制。然后,该方法被应用于研究菊花和 20 种化合物中的挥发性有机化合物,包括单萜及其含氧衍生物、芳香烃和倍半萜,通过这些离子-分子反应进行鉴定。这项研究为分析和鉴定各种挥发性化合物提供了一种新的思路和方法。