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High-Pressure Ion Mobility Spectrometry

机译:高压离子迁移谱

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The effects of above-ambient pressure on ion mobility on resolving power, resolution, and ion current were investigated using a small, stand-alone ion mobility spectrometer (IMS). This work demonstrates the first example of ion mobility spectrometry at pressures above ambient. Ion mobility spectra of chemical warfare agent (CWA) stimulant dimethyl methylphosphonate (DMMP) and several other standard compounds are shown for superambient conditions. The IMS was operated at pressures from 700 to 4560 Torr. An optimal resolving power was obtained at a specific voltage as a function of pressure, with higher optimal resolving powers obtained at higher voltages, as predicted from standard IMS theory. At high pressures, however, resolving power did not increase as much as theory predicted, presumably due to ion clustering. Nevertheless, an increase in pressure was found to improve resolution in IMS. One example where high pressure improved resolution was the separation of cyclohexylamine (K_(0) velence 1.83) and 2-hexanone (K_(0) velence 1.86) (where K_(0) is the reduced mobility value). The product ions of these two compounds could not be separated at ambient pressure but could be nearly baseline separated when the pressure of the buffer gas was raised to 2280 Torr. Total ion current was also examined at pressures from ambient up to 4560 Torr. Total ion current, when investigated with pressure, was found to reach a maximum, initially rising with increased pressure.
机译:使用小型独立式离子迁移谱仪(IMS)研究了高于环境压力的压力对离子迁移率的影响,包括分离能力,分离度和离子电流。这项工作展示了在高于环境压力的条件下离子迁移谱的第一个例子。显示了化学战剂(CWA)刺激剂甲基膦酸二甲酯(DMMP)和其他几种标准化合物在高环境条件下的离子迁移谱。 IMS在700至4560托的压力下运行。如根据标准IMS理论所预测的,在特定电压下获得最佳分辨能力作为压力的函数,而在较高电压下获得更高的最佳分辨能力。但是,在高压下,分辨力的增加没有理论上所预期的那样大,这可能是由于离子簇引起的。尽管如此,发现压力的增加可以改善IMS中的分辨率。高压提高分辨率的一个例子是分离环己胺(K_(0)velence 1.83)和2-己酮(K_(0)velence 1.86)(其中K_(0)是降低的迁移率值)。这两种化合物的产物离子在环境压力下无法分离,但是当缓冲气体的压力升至2280 Torr时,它们几乎可以被基线分离。还检查了总离子电流,压力范围为环境压力至4560托。当用压力研究时,发现总离子电流达到最大值,最初随着压力增加而上升。

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