Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5395121 | Computational and Theoretical Chemistry | 2011 | 6 Pages |
Abstract
We present a detailed theoretical study of the interaction of arsenious acid with a water molecule, for which a singular triply hydrogen-bonded complex is found. We focus on the accurate determination of the interaction energy and analyze the electronic density and atomic charges through the Atoms-in-Molecules (AIM) topological approach of Bader. Our benchmark-quality interaction energy is 10.68Â kcal/mol. AIM analysis shows three intermolecular bond critical points confirming the hydrogen bonds. We find that this triply hydrogen-bonded complex is quite energetic considering the double acceptor character of oxygen of the water molecule compared to other triply hydrogen-bonded structures. AIM atomic charges show that the fragments are neutral in the complex, thus revealing the dominant dipole-dipole nature of the intermolecular interaction.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
A. RamÃrez-SolÃs, M. Ho, J. Hernández-Cobos, I. Ortega-Blake,