Periodic trends in the hydration energies and critical sizes of alkaline earth and transition metal dication water complexes

Author:

Yang Fan1,Armentrout P. B.1

Affiliation:

1. Department of Chemistry University of Utah Salt Lake City Utah USA

Abstract

AbstractThis review encompasses guided ion beam tandem mass spectrometry studies of hydrated metal dication complexes. Metals include the Group 2 alkaline earths (Mg, Ca, Sr, and Ba), late first‐row transition metals (Mn, Fe, Co, Ni, Cu, and Zn), along with Cd. In all cases, threshold collision‐induced dissociation experiments are used to quantitatively determine the sequential hydration energies for M2+(H2O)x complexes ranging in size from one to 11 water molecules. Periodic trends in these bond dissociation energies are examined and discussed. Values are compared to other experimental results when available. In addition to dissociation by simple water ligand loss, complexes at a select size (which differs from metal to metal) are also observed to undergo charge separation to yield a hydrated metal hydroxide cation and a hydrated proton. This leads to the concept of a critical size, xcrit, and the periodic trends in this value are also discussed.

Publisher

Wiley

Subject

Spectroscopy,General Biochemistry, Genetics and Molecular Biology,Condensed Matter Physics,Analytical Chemistry

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