Department of Chemistry, Isfahan University of Technology, Isfahan, Iran.
Anal Chem. 2011 Feb 1;83(3):797-803. doi: 10.1021/ac1022937. Epub 2010 Dec 30.
In this research work, the capability of low-temperature plasma (LTP) as an ionization source for ion mobility spectrometry (IMS) has been investigated for the first time. This new ionization source enhances the potential of IMS as a portable analytical tool and allows direct analysis of various chemical compounds without having to evaporate the analyte or seek a solvent or reagent whatsoever. The effects of parameters such as the flow rate of the discharge gas, plasma voltage, and positioning of the LTP on the IMS signal were investigated. The positive reactant ions generated by the LTP ionization source were similar to those created in a corona discharge ionization source, where the proton clusters ((H(2)O)(n)H(+)) are the most abundant reactant ion, and in the negative mode, in addition to a saturated electron peak, several negative reactant ions (e.g., NO(x)(-)) were observed too. These reactant ions subsequently ionized the gaseous samples directly and liquids or solids after evaporation by plasma desorption. The ion mobility spectra of a few selected compounds, including explosives, drugs, and amines, were obtained to evaluate the new ionization source in positive and negative modes, and the reduced mobility values (K(0)) of the originated ions were calculated. Furthermore, the method has also been applied to obtain the figures of merit for acetaminophen as a test compound. The results obtained are promising enough to ensure the use of LTP as a desorption/ionization source in IMS for analytical applications.
在这项研究工作中,首次研究了低温等离子体(LTP)作为离子迁移谱(IMS)离子源的能力。这种新的离子源增强了 IMS 作为便携式分析工具的潜力,并且可以直接分析各种化学化合物,而无需蒸发分析物或寻找溶剂或试剂。研究了诸如放电气体的流速,等离子体电压和 LTP 在 IMS 信号上的位置等参数的影响。LTP 电离源产生的正反应物离子与在电晕放电电离源中产生的正反应物离子相似,其中质子簇((H(2)O)(n)H(+))是最丰富的反应物离子,而在负模式下,除了饱和电子峰外,还观察到几种负反应物离子(例如,NO(x)(-))。这些反应物离子随后通过等离子体解吸直接使气态样品和蒸发后的液体或固体离子化。获得了包括爆炸物,药物和胺在内的几种选定化合物的离子迁移谱,以评估正模式和负模式下的新电离源,并计算出原始离子的迁移率值(K(0))。此外,该方法还已用于获得作为测试化合物的对乙酰氨基酚的度量标准。得到的结果非常有希望,可以确保将 LTP 用作 IMS 中的解吸/电离源,用于分析应用。