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Positive Ion Transmission Mode Ion/Ion Reactions in a Hybrid Linear Ion Trap
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Abstract
A triple quadrupole mass spectrometer capable of ion trapping experiments has been adapted for ion/ion reaction studies. The instrument is based on a commercially available linear ion trap (LIT) tandem mass spectrometer (i.e., an MDS SCIEX 2000 Q TRAP) that has been modified by mounting an atmospheric sampling glow discharge ionization (ASGDI) source to the side of the vacuum manifold for production of singly charged anions. The ASGDI source is located line of sight to the side of the third quadrupole of the triple quadrupole assembly (Q3). Anions are focused into the side of the rod array (i.e., anion injection occurs orthogonal to the normal ion flight path). A transmission mode method to perform ion/ion reactions has been developed whereby positive ions are transmitted through the pressurized collision quadrupole (Q2) while anions are stored in Q2. The Q2 LIT is used to trap negative ions whereas the Q3 LIT is used to accumulate positive ions transmitted from Q2. Anions are injected to Q3 and transferred to Q2, where they are stored and collisionally cooled. Multiply charged protein/peptide ions, formed by electrospray, are then mass selected by the first quadrupole assembly (Q1) operated in the rf/dc mode and injected into Q2. The positive ions, including the residual precursor ions and the product ions arising from ion/ion proton-transfer reactions, are accumulated in Q3 until they are analyzed via mass-selective axial ejection for mass analysis. The parameters that affect ion/ion reactions are discussed, including pressure, nature of the gas in Q2, and operation of Q2 as a linear accelerator. Ion/ion reactions in this mode can be readily utilized to separate ions with the same m/z but largely different mass and charge, e.g., +1 bradykinin and +16 myoglobin, in the gas phase.
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This article has been cited by 2 ACS Journal articles (2 most recent appear below).

Transmission Mode Ion/Ion Electron-Transfer Dissociation in a Linear Ion Trap
Xiaorong Liang, James W. Hager, and Scott A. McLuckeyAnalytical Chemistry2007 79 (9), 3363-3370Transmission Mode Ion/Ion Electron-Transfer Dissociation in a Linear Ion Trap
Xiaorong Liang, James W. Hager, and Scott A. McLuckeyAnalytical Chemistry2007 79 (9), 3363-3370Two related methods for effecting electron-transfer dissociation (ETD) are described that involve either the storage of analyte cations in a linear ion trap while reagent anions are transmitted through the cations or storage of the reagent anions with ...

Alternately Pulsed Nanoelectrospray Ionization/Atmospheric Pressure Chemical Ionization for Ion/Ion Reactions in an Electrodynamic Ion Trap
Xiaorong Liang, Yu Xia, and Scott A. McLuckeyAnalytical Chemistry2006 78 (9), 3208-3212Alternately Pulsed Nanoelectrospray Ionization/Atmospheric Pressure Chemical Ionization for Ion/Ion Reactions in an Electrodynamic Ion Trap
Xiaorong Liang, Yu Xia, and Scott A. McLuckeyAnalytical Chemistry2006 78 (9), 3208-3212The alternate operation of nanoelectrospray ionization and atmospheric pressure chemical ionization, using a common atmosphere/vacuum interface and ion path, has been implemented to facilitate ion/ion reaction experiments in a linear ion trap-based tandem ...
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History
- Published In Issue September 01, 2004
- Received for review April 30, 2004. Accepted June 22, 2004.
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