articleThe Journal of Physical Chemistry BJul 25, 2006Closed access

Aqueous Solvation Free Energies of Ions and Ion−Water Clusters Based on an Accurate Value for the Absolute Aqueous Solvation Free Energy of the Proton

University of Minnesota

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Abstract

Thermochemical cycles that involve pKa, gas-phase acidities, aqueous solvation free energies of neutral species, and gas-phase clustering free energies have been used with the cluster pair approximation to determine the absolute aqueous solvation free energy of the proton. The best value obtained in this work is in good agreement with the value reported by Tissandier et al. (Tissandier, M. D.; Cowen, K. A.; Feng, W. Y.; Gundlach, E.; Cohen, M. J.; Earhart, A. D.; Coe, J. V. J. Phys. Chem. A 1998, 102, 7787), who applied the cluster pair approximation to a less diverse and smaller data set of ions. We agree with previous workers who advocated the value of -265.9 kcal/mol for the absolute aqueous solvation free…

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Authors

3

Topics & keywords

Keywords
  • Solvation
  • Chemistry
  • Aqueous solution
  • Ion
  • Proton
  • Computational chemistry
  • Physical chemistry
  • Physics
UN Sustainable Development Goals
  • Clean water and sanitation
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