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Ion Mobility Spectrometry – Mass Spectrometry Performance Using Electrodynamic Ion Funnels and Elevated Drift Gas Pressures

机译:离子迁移谱法–使用电动离子漏斗和升高的漂移气压力的质谱性能

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摘要

The ability of ion mobility spectrometry coupled with mass spectrometry (IMS-MS) to characterize biological mixtures has been illustrated over the past eight years. However, the challenges posed by the extreme complexity of many biological samples have demonstrated the need for higher resolution IMS-MS measurements. We have developed a higher resolution ESI-IMS-TOF MS by utilizing high pressure electrodynamic ion funnels at both ends of the IMS drift cell and operating the drift cell at an elevated pressure compared to that conventionally used. The ESI-IMS-TOF MS instrument consists of an ESI source, an hourglass ion funnel used for ion accumulation/injection into an 88 cm drift cell followed by a 10 cm ion funnel and a commercial orthogonal time-of-flight mass spectrometer providing high mass measurement accuracy. It was found that the rear ion funnel could be effectively operated as an extension of the drift cell when the DC fields were matched, providing an effective drift region of 98 cm. The resolution of the instrument was evaluated at pressures ranging from 4 to12 Torr and ion mobility drift voltages of 16 V/cm (4 Torr) to 43 V/cm (12 Torr). An increase in resolution from 55 to 80 was observed from 4 to 12 Torr nitrogen drift gas with no significant loss in sensitivity. The choice of drift gas was also shown to influence the degree of ion heating and relative trapping efficiency within the ion funnel.
机译:在过去的八年中,离子淌度质谱与质谱(IMS-MS)结合表征生物混合物的能力得到了证明。但是,许多生物样品的极端复杂性带来的挑战表明,需要更高分辨率的IMS-MS测量。通过使用IMS漂移池两端的高压电动漏斗,并与传统方法相比,在较高的压力下运行漂移池,我们已经开发出了更高分辨率的ESI-IMS-TOF MS。 ESI-IMS-TOF MS仪器包括一个ESI源,一个用于将离子积累/注入88厘米漂移池的沙漏离子漏斗,一个10厘米离子漏斗以及一个提供高分离度的商用正交飞行时间质谱仪质量测量精度。已经发现,当匹配直流电场时,后离子漏斗可以有效地用作漂移池的延伸部分,从而提供98 cm的有效漂移区。在4至12 Torr的压力和16 V / cm(4 Torr)至43 V / cm(12 Torr)的离子迁移率漂移电压下评估了仪器的分辨率。从4到12 Torr氮气漂移气体观察到分辨率从55升高到80,灵敏度没有明显降低。还显示了漂移气体的选择会影响离子加热的程度和离子漏斗内的相对捕集效率。

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