Orejas Jaime, Pfeuffer Kevin P, Ray Steven J, Pisonero Jorge, Sanz-Medel Alfredo, Hieftje Gary M
Department of Physics, University of Oviedo, C/ Gonzalo Gutiérrez, Quirós S/N, 33600, Mieres, Spain.
Anal Bioanal Chem. 2014 Nov;406(29):7511-21. doi: 10.1007/s00216-014-8088-x. Epub 2014 Sep 2.
Ambient desorption/ionization (ADI) sources coupled to mass spectrometry (MS) offer outstanding analytical features: direct analysis of real samples without sample pretreatment, combined with the selectivity and sensitivity of MS. Since ADI sources typically work in the open atmosphere, ambient conditions can affect the desorption and ionization processes. Here, the effects of internal source parameters and ambient humidity on the ionization processes of the flowing atmospheric pressure afterglow (FAPA) source are investigated. The interaction of reagent ions with a range of analytes is studied in terms of sensitivity and based upon the processes that occur in the ionization reactions. The results show that internal parameters which lead to higher gas temperatures afforded higher sensitivities, although fragmentation is also affected. In the case of humidity, only extremely dry conditions led to higher sensitivities, while fragmentation remained unaffected.
与质谱联用的常压解吸/电离(ADI)源具有出色的分析特性:无需样品预处理即可直接分析实际样品,同时兼具质谱的选择性和灵敏度。由于ADI源通常在开放大气中工作,环境条件会影响解吸和电离过程。在此,研究了内部源参数和环境湿度对流动大气压余辉(FAPA)源电离过程的影响。根据灵敏度并基于电离反应中发生的过程,研究了试剂离子与一系列分析物的相互作用。结果表明,导致气体温度较高的内部参数可提供更高的灵敏度,不过碎片形成也会受到影响。就湿度而言,只有极端干燥的条件会导致更高的灵敏度,而碎片形成不受影响。