Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5380079 | Chemical Physics Letters | 2015 | 21 Pages |
Abstract
A density functional mPW1PW91 study of the most stable conformers of MOH(H2O)0-3 clusters (MÂ =Â alkali or alkaline-earth atom) was performed, along with quantum chemistry CCSD(T,Full) calculations for MÂ =Â Li and Be. The resulting binding energies for hydration, atom-charge and valence-electron distributions allow for a rationalization of the opposite trends in the cluster-size dependence of adiabatic/vertical ionization energies for the alkali and the alkaline-earth monohydroxides. The closed- and open-shell natures of the latter, respectively, determines their behavior during initial steps of their hydration processes, whereas the ionic/covalent character of their MOH bonds plays a minor role except for BeOH.
Related Topics
Physical Sciences and Engineering
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Physical and Theoretical Chemistry
Authors
Maximiliano Rossa, Juan C. Ferrero, Iván Cabanillas-Vidosa, Carlos J. Cobos,