4.6 Article

How Many Water Molecules Does it Take to Dissociate HCl?

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 22, 期 8, 页码 2812-2818

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201504016

关键词

abinitio calculations; dissociation; global optimization; hydrogen bonds; microsolvation

资金

  1. Moshinsky Foundation
  2. Tecnologico Nacional de Mexico [069-14-PD]
  3. PRODEP [ITESCAM-PTC-026]
  4. Universidad de Antioquia
  5. Conacyt

向作者/读者索取更多资源

The potential energy surfaces of the HCl(H2O)(n) (n is the number of water molecules) clusters are systematically explored using density functional theory and high-level ab initio computations. On the basis of electronic energies, the number of water molecules needed for HCl dissociation is four as reported by some experimental groups. However, this number is five owing to the inclusion of entropic factors. Wiberg bond indices are calculated and analyzed, and the results provide a quadratic correlation and classification of clusters according to the nondissociated, partially dissociated, and fully dissociated character of the H-Cl bond. Our computations show that if temperature is not controlled during the experiment, the values obtained for the dipole moment (or for any measurable property) are susceptible to change, providing a different picture of the number of water molecules needed for HCl dissociation in a nanoscopic droplet.

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