Accessing the Vibrational Signatures of Amino Acid Ions Embedded in Water Clusters
Author(s) -
Jonathan M. Voss,
Kaitlyn C. Fischer,
Étienne Garand
Publication year - 2018
Publication title -
the journal of physical chemistry letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.563
H-Index - 203
ISSN - 1948-7185
DOI - 10.1021/acs.jpclett.8b00738
Subject(s) - ion , chemical physics , chemistry , computer science , organic chemistry
We present an infrared predissociation (IRPD) study of microsolvated GlyH + (H 2 O) n and GlyH + (D 2 O) n clusters, formed inside of a cryogenic ion trap via condensation of H 2 O or D 2 O onto the protonated glycine ions. The resulting IRPD spectra, showing characteristic O-H and O-D stretches, indicate that H/D exchange reactions are quenched when the ion trap is held at 80 K, minimizing the presence of isotopomers. Comparisons of GlyH + (H 2 O) n and GlyH + (D 2 O) n spectra clearly highlight and distinguish the vibrational signatures of the water solvent molecules from those of the core GlyH + ion, allowing for quick assessment of solvation structures. Without the aid of calculations, we can already infer solvation motifs and the presence of multiple conformations. The use of a cryogenic ion trap to cluster solvent molecules around ions of interest and control H/D exchange reactions is broadly applicable and should be extendable to studies of more complex peptidic ions in large solvated clusters.
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