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Updated: Jul 3, 2026

Analysis of Complex Molecules and Their Reactions on Surfaces by Means of Cluster-Induced Desorption/Ionization Mass Spectrometry
Published on: March 1, 2020
Surface-induced dissociation shows potential to be more informative than collision-induced dissociation for
Vicki H Wysocki1, Christopher M Jones, Asiri S Galhena
1Department of Chemistry, Department of Biochemistry and Molecular Biophysics, University of Arizona, Tucson, Arizona 857-0041, USA. vwysocki@email.arizona.edu
Abstract:
The ability to preserve noncovalent, macromolecular assemblies intact in the gas phase has paved the way for mass spectrometry to characterize ions of increasing size and become a powerful tool in the field of structural biology. Tandem mass spectrometry experiments have the potential to expand the capabilities of this technique through the gas-phase dissociation of macromolecular complexes, but collisions with small gas atoms currently provide very limited fragmentation. One alternative for dissociating large ions is to collide them into a surface, a more massive target. Here, we demonstrate the ability and benefit of fragmenting large protein complexes and inorganic salt clusters by surface-induced dissociation (SID), which provides more extensive fragmentation of these systems and shows promise as an activation method for ions of increasing size.
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