Selectivity improvement of positive photoionization ion mobility spectrometry for rapid detection of organophosphorus pesticides by switching dopant concentration

文献类型: 外文期刊

第一作者: Zhou, Qinghua

作者: Zhou, Qinghua;Wang, Bin;Chen, Jinyuan;Li, Jia;Wang, Shuang;Li, Haiyang

作者机构:

关键词: Positive ionization ion mobility spectrometry;Organophosphorus pesticides;Dopant;Chinese cabbage;Proton transfer;UV-irradiation

期刊名称:TALANTA ( 影响因子:6.057; 五年影响因子:5.386 )

ISSN: 0039-9140

年卷期: 2018 年 176 卷

页码:

收录情况: SCI

摘要: Ion mobility spectrometry (IMS) opened a potential avenue for the rapid detection of organophosphorus pesticides (OPPs), though an improved selectivity of stand-alone IMS was still in high demand. In this study, a stand-alone positive photoionization ion mobility spectrometry (PP-IMS) apparatus was constructed for the rapid detection of OPPs with acetone as dopant. The photoionization of acetone molecules was induced by the ultraviolet irradiation to produce the reactant ions (Ac)(2)H+, which were employed to ionize the OPPs including fenthion, imidan, phosphamidon, dursban, dimethoate and isocarbophos via the proton transfer reaction. Due to the difference in proton affinity, the tested OPPs exhibited the different dopant-dependent manners. Based on this observation, the switching of dopant concentration was implemented to improve the selectivity of PP-IMS for OPPs detection. For instance, a mixture of fenthion, dursban and dimethoate was tested. By switching the concentration of doped acetone from 0.07 to 2.33 to 19.94 mg L-1, the ion peaks of fenthion and dursban were inhibited in succession, achieving the selective detection of dimethoate at last. In addition, another mixture of imidan and phosphamidon was initially detected by PP-IMS with a dose of 0.07 mg L-1 acetone, indicating that their ion peaks were severely overlapped; when the concentration of doped acetone was switched to 19.94 mg L-1, the inhibition of imidan signals promised the accurate identification of phosphamidon in mixture. Finally, the PP-IMS in combination of switching dopant concentration was applied to detect the mixed fenthion, dursban and dimethoate in Chinese cabbage, demonstrating the applicability of proposed method to real samples.

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