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混合串联质谱仪仅含射频离子导向器中的传输模式离子/离子反应。

Transmission mode ion/ion reactions in the radiofrequency-only ion guide of hybrid tandem mass spectrometers.

作者信息

Emory Joshua F, Hassell Kerry H, Londry Frank A, McLuckey Scott A

机构信息

Department of Chemistry, Purdue University, West Lafayette, IN 47907-2084, USA.

出版信息

Rapid Commun Mass Spectrom. 2009 Feb;23(3):409-18. doi: 10.1002/rcm.3894.

Abstract

Transmission mode ion/ion reactions have been performed within the first quadrupole, the Q0 radiofrequency (RF)-only quadrupole, of two types of hybrid tandem mass spectrometers (viz., triple quadrupole/linear ion trap and QqTOF instruments). These transmission mode reactions involved the storage of either the reagent species and the transmission of the analyte species through the Q0 quadrupole for charge inversion reactions or the storage of the analyte ions and transmission of the reagent ions as in charge reduction experiments. A key advantage to the use of transmission mode ion/ion reactions is that they do not require any instrument hardware modifications to provide interactions of oppositely charged ions and can be implemented in any instrument that contains a quadrupole or linear ion trap. The focus of this work was to investigate the potential of using the RF-only quadrupole ion guide positioned prior to the first mass-resolving element in a tandem mass spectrometer for ion/ion reactions. Two types of exemplary experiments have been demonstrated. One involved a charge inversion reaction and the other involved a charge reduction reaction in conjunction with ion parking. Ion/ion reactions proved to be readily implemented in Q0 thereby adding significantly greater experimental flexibility in the use of ion/ion reaction experiments with hybrid tandem mass spectrometers.

摘要

在两种类型的混合串联质谱仪(即三重四极杆/线性离子阱和QqTOF仪器)的第一个四极杆(即仅具有射频(RF)的Q0四极杆)内进行了传输模式离子/离子反应。这些传输模式反应包括储存试剂离子并使分析物离子通过Q0四极杆进行电荷反转反应,或者储存分析物离子并传输试剂离子以进行电荷减少实验,如电荷减少实验中那样。使用传输模式离子/离子反应的一个关键优势在于,它们无需对仪器硬件进行任何修改即可实现带相反电荷离子的相互作用,并且可以在任何包含四极杆或线性离子阱的仪器中实施。这项工作的重点是研究在串联质谱仪中位于第一个质量分辨元件之前的仅具有射频的四极杆离子导向器用于离子/离子反应的潜力。已经展示了两种类型的示例性实验。一种涉及电荷反转反应,另一种涉及结合离子驻留的电荷减少反应。事实证明,离子/离子反应在Q0中很容易实现,从而在使用混合串联质谱仪进行离子/离子反应实验时显著增加了实验灵活性。

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