Issue 29, 2014

Desorption of hydrogen from light metal hydrides: concerted electronic rearrangement and role of H⋯H interactions

Abstract

A theoretical study of the desorption of hydrogen from rhombic Group 1 metal hydride dimers reveals a concerted reorganisation of the electron density for the M–H and H–H moieties as the reaction coordinate is traversed and a closed-shell H⋯H interaction evolves into a covalent H2 bond. The central role played by homopolar dihydrogen bonding in this process is revealed and analysed.

Graphical abstract: Desorption of hydrogen from light metal hydrides: concerted electronic rearrangement and role of H⋯H interactions

Supplementary files

Article information

Article type
Communication
Submitted
06 Feb 2014
Accepted
25 Feb 2014
First published
26 Feb 2014

Chem. Commun., 2014,50, 3820-3823

Author version available

Desorption of hydrogen from light metal hydrides: concerted electronic rearrangement and role of H⋯H interactions

D. J. Wolstenholme, M. M. D. Roy, M. E. Thomas and G. S. McGrady, Chem. Commun., 2014, 50, 3820 DOI: 10.1039/C4CC00987H

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