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质谱和离子淌度谱法检测复杂样品中痕量爆炸物的假阳性反应评估。

Evaluation of false positive responses by mass spectrometry and ion mobility spectrometry for the detection of trace explosives in complex samples.

机构信息

Washington State University, Department of Chemistry, Pullman, WA 99164, United States.

出版信息

Anal Chim Acta. 2013 Sep 17;795:36-43. doi: 10.1016/j.aca.2013.07.070. Epub 2013 Aug 6.

DOI:10.1016/j.aca.2013.07.070
PMID:23998535
Abstract

Secondary electrospray ionization-ion mobility-time of flight mass spectrometry (SESI-IM-TOFMS) was used to evaluate common household products and food ingredients for any mass or mobility responses that produced false positives for explosives. These products contained ingredients which shared the same mass and mobility drift time ranges as the analyte ions for common explosives. The results of this study showed that the vast array of compounds in these products can cause either mass or mobility false positive responses. This work also found that two ingredients caused either enhanced or reduced ionization of the target analytes. Another result showed that an IMS can provide real-time separation of ion species that impede accurate mass identifications due to overlapping isotope peak patterns. The final result of this study showed that, when mass and mobility values were used to identify an ion, no false responses were found for the target explosives. The wider implication of these results is that the possibility exists for even greater occurrences of false responses from complex mixtures found in common products. Neither IMS nor MS alone can provide 100% assurance from false responses. IMS, due to its low cost, ease of operation, rugged reliability, high sensitivity and tunable selectivity, will remain the field method of choice for the near future but, when combined with MS, can also reduce the false positive rate for explosive analyses.

摘要

二级电喷雾电离-离子淌度-飞行时间质谱法(SESI-IM-TOFMS)用于评估常见的家用产品和食品成分,以确定是否存在任何可能导致爆炸物假阳性的质量或迁移率响应。这些产品中包含的成分与常见爆炸物的分析物离子具有相同的质量和迁移率漂移时间范围。这项研究的结果表明,这些产品中的大量化合物会导致质量或迁移率出现假阳性响应。这项工作还发现,有两种成分会增强或降低目标分析物的离子化。另一个结果表明,由于重叠的同位素峰模式,IMS 可以提供实时分离阻碍准确质量鉴定的离子物种。这项研究的最终结果表明,当使用质量和迁移率值来识别离子时,目标爆炸物没有发现假响应。这些结果的更广泛含义是,即使在常见产品中发现复杂混合物,也有可能出现更大的假响应。单独的 IMS 或 MS 都不能 100%保证避免假响应。由于其低成本、易于操作、坚固可靠、高灵敏度和可调选择性,IMS 将在不久的将来仍然是首选的现场方法,但与 MS 结合使用时,也可以降低爆炸物分析的假阳性率。

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