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High-Sensitivity ion Mobility Spectrometry/Mass Spectrometry Using Electrodynamic ion Funnel Interfaces

机译:使用电动离子漏斗接口的高灵敏度离子迁移谱/质谱

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The utility of ion mobility spectrometry (IMS) for separation of mixtures and structural characterization of ions has been demonstrated extensively, including in biological and nanoscience contexts. A major attraction of IMS is itsspeed, several orders of magnitude greater than that of condensed-phase separations. Nonetheless, IMS combined with mass spectrometry (MS) has remained a niche technique, substantially because of limited sensitivity resulting from ion losses at the IMS-MS junction. We have developed a new electrospray ionization (ESI)-IMS-QTOF MS instrument that incorporates electrodynamic ion funnels at both front ESI-IMS and rear IMS-QTOF niterfaces. The front funnel is of the novel "hourglass" design that efficiently accumulates ions and pulses them into the IMS drift tube. Even for dna tubes of 2-m length, ion transmission through IMS and on to QTOF is essentially lossless across the range of ion masses relevant to most applications. The rf ion focusing at the IMS terminus does not degrade IMS resolving power, which exceeds 100 (for singly charged ions) and is close to the theoretical limit. The overall sensitivity of the present ESI-IMS-MS system is comparable to that of commercial ESI-MS, which should make IMS-MS suitable for analyses of complex mixtures with ultrahigh sensitivity and exceptional throughput.
机译:离子迁移谱法(IMS)用于分离混合物和对离子进行结构表征的效用已得到广泛证明,包括在生物学和纳米科学领域。 IMS的主要吸引力在于它的速度,比浓缩相分离的速度高几个数量级。尽管如此,IMS与质谱(MS)的结合仍然是一项利基技术,这主要是因为IMS-MS交界处离子损失导致灵敏度有限。我们已经开发了一种新的电喷雾电离(ESI)-IMS-QTOF MS仪器,该仪器在前ESI-IMS和后IMS-QTOF双面都集成了电动离子漏斗。前漏斗采用新颖的“沙漏”设计,可以有效地累积离子并将其脉冲进入IMS漂移管。即使对于长度为2 m的dna管,通过IMS传输到QTOF的离子在与大多数应用相关的整个离子质量范围内也基本上是无损的。聚焦在IMS末端的rf离子不会降低IMS的分辨能力,该能力超过100(对于单电荷离子),并且接近理论极限。当前的ESI-IMS-MS系统的总体灵敏度与商业ESI-MS相当,这将使IMS-MS适合于具有超高灵敏度和出色通量的复杂混合物的分析。

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