Atmospheric pressure laser desorption/chemical ionization mass spectrometry: a new ionization method based on existing themes
Joshua J. Coon, Kevin Jude McHale, Willard Wayne. Harrison
Abstract
Joshua J. Coon, Kevin Jude McHale, Willard Wayne. Harrison
Abstract
We have designed and constructed an atmospheric pressure laser desorption/chemical ionization (AP-LD/CI) source that utilizes a laser pulse to desorb intact neutral molecules, followed by chemical ionization via reagent ions produced by a corona discharge. This source employs a heated capillary atmospheric pressure inlet coupled to a quadrupole ion trap mass spectrometer and allows sampling under normal ambient air conditions. Preliminary results demonstrate that this technique provides approximately 150-fold increase in analyte ions compared to the ion population generated by atmospheric pressure infrared matrix-assisted laser desorption/ionization (AP-IR-MALDI).
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We have designed and constructed an atmospheric pressure laser desorption/chemical ionization (AP-LD/CI) source that utilizes a laser pulse to desorb intact neutral molecules, followed by chemical ionization via reagent ions produced by a corona discharge. This source employs a heated capillary atmospheric pressure inlet coupled to a quadrupole ion trap mass spectrometer and allows sampling under normal ambient air conditions. Preliminary results demonstrate that this technique provides approximately 150-fold increase in analyte ions compared to the ion population generated by atmospheric pressure infrared matrix-assisted laser desorption/ionization (AP-IR-MALDI).
Key concepts: Chemistry, Ambient ionization, Soft laser desorption, Ion source, Atmospheric-pressure laser ionization, Mass spectrometry, Matrix-assisted laser desorption electrospray ionization, Analytical Chemistry (journal)