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高效地将低质量的离子注入到高磁场傅里叶变换离子回旋共振质谱仪中。

Efficient injection of low-mass ions into high magnetic field Fourier transform ion cyclotron resonance mass spectrometers.

机构信息

Department of Chemistry and Biochemistry, Baylor University, Waco, TX, 76706, USA.

出版信息

Rapid Commun Mass Spectrom. 2014 Jan 30;28(2):230-8. doi: 10.1002/rcm.6768.

DOI:10.1002/rcm.6768
PMID:24338971
Abstract

RATIONALE

Low-mass cut-off restrictions for injecting ions from external ion sources into high magnetic fields impose limitations for wide mass range analyses with Fourier transform ion cyclotron resonance (FTICR) instruments. Radio-frequency (RF)-only quadrupole ion guides (QIGs) with higher frequencies can be used to overcome low-mass cut-off in FTICR instruments.

METHODS

RF signals (1.0 MHz to 10.0 MHz) were applied to QIGs to transfer externally generated ions from either electron ionization (EI) or electrospray ionization (ESI) sources into ICR cells of 9.4 T FTICR mass spectrometers. Efficiencies of QIGs were evaluated using externally generated ions from: EI of acetone, air, and perfluorotributylamine mixture, EI of gas chromatography (GC)-separated components of a standard sample mixture, and ESI of complex mixtures such as petroleum and fulvic acid samples.

RESULTS

We were able to transfer ions with m/z as low as 26 from an external EI source into the ICR cell of a 9.4 T FTICR mass spectrometer and extend the operational low-mass range for ESI-FTICR analyses. High mass resolving power and mass measurement accuracy of GC/FTICR mass spectrometry were utilized to discriminate between oxygenated and non-oxygenated compounds in a 'Grob' sample. Ion losses based on SIMION ion trajectory predictions were consistent with experimental findings.

CONCLUSIONS

We demonstrated that the use of high-frequency QIGs can extend the operational lower m/z range for both external EI- and ESI-FTICR mass spectrometers. By considering both ICR and Mathieu equations of motions to describe ion trajectories, theoretical ion ejection thresholds (consistent with our experimental findings) could be predicted.

摘要

原理

从外部离子源将离子注入高磁场时的低质量截止限制对具有傅里叶变换离子回旋共振(FTICR)仪器的宽质量范围分析施加了限制。可以使用更高频率的仅射频(RF)四极离子阱(QIG)来克服 FTICR 仪器中的低质量截止。

方法

将 RF 信号(1.0 MHz 至 10.0 MHz)施加到 QIG 上,将从电子电离(EI)或电喷雾电离(ESI)源外部产生的离子转移到 9.4 T FTICR 质谱仪的 ICR 单元中。使用从以下方面外部产生的离子来评估 QIG 的效率:丙酮、空气和全氟三丁胺混合物的 EI、标准样品混合物的 GC 分离成分的 EI 以及石油和富里酸等复杂混合物的 ESI。

结果

我们能够将 m/z 低至 26 的离子从外部 EI 源转移到 9.4 T FTICR 质谱仪的 ICR 单元中,并扩展 ESI-FTICR 分析的操作低质量范围。高分辨 GC/FTICR 质谱的质量分辨率和质量测量精度用于区分“Grob”样品中的含氧和非含氧化合物。基于 SIMION 离子轨迹预测的离子损失与实验结果一致。

结论

我们证明了使用高频 QIG 可以扩展外部 EI 和 ESI-FTICR 质谱仪的操作低质量 m/z 范围。通过考虑 ICR 和 Mathieu 运动方程来描述离子轨迹,可以预测理论离子喷射阈值(与我们的实验结果一致)。

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