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Ion formation mechanisms in UV-MALDI

The Analyst · 2006 · Vol. 131(9) · pp. 966–966
Richard Knochenmuss

Abstract

Matrix Assisted Laser Desorption/Ionization (MALDI) is a very widely used analytical method, but has been developed in a highly empirical manner. Deeper understanding of ionization mechanisms could help to design better methods and improve interpretation of mass spectra. This review summarizes current mechanistic thinking, with emphasis on the most common MALDI variant using ultraviolet laser excitation. A two-step framework is gaining acceptance as a useful model for many MALDI experiments. The steps are primary ionization during or shortly after the laser pulse, followed by secondary reactions in the expanding plume of desorbed material. Primary ionization in UV-MALDI remains somewhat controversial, the two main approaches are the cluster and pooling/photoionization models. Secondary events are less contentious, ion-molecule reaction thermodynamics and kinetics are often invoked, but details differ. To the extent that local thermal equilibrium is approached in the plume, the mass spectra may be straightforwardly interpreted in terms of charge transfer thermodynamics.

Mass Spectrometry Techniques and ApplicationsIon-surface interactions and analysisLaser-induced spectroscopy and plasmaPhotoionizationChemistryIonizationAmbient ionizationMass spectrometryAtmospheric-pressure laser ionizationMatrix-assisted laser desorption electrospray ionizationIonMass spectrumChemical physics

MeSH terms

IonsModels, TheoreticalSpectrophotometry, UltravioletSpectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
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References
On the Theory of Oxidation-Reduction Reactions Involving Electron Transfer. I
The Journal of Chemical Physics · 1956 · 5,922 citations
Handbook of chemistry and physics
Journal of the Franklin Institute · 1930 · 11,732 citations
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