Publication | Closed Access
Prediction of the p<i>K</i><sub>a</sub> of Carboxylic Acids Using the ab Initio Continuum-Solvation Model PCM-UAHF
218
Citations
27
References
1998
Year
EngineeringProton-coupled Electron TransferOrganic ChemistryComputational ChemistryChemistrySolution (Chemistry)Molecular SimulationExperimental Pka DataRelative Pka TrendsBiophysicsChemical ThermodynamicsCarboxylic AcidsBiochemistryQuantum ChemistryMolecular ChemistryMolecular ModelingGas PhaseNatural SciencesProton TransferChemical Kinetics
Experimental pKa data for 16 aliphatic carboxylic acids are compared with calculated proton-transfer energies in the gas phase and in aqueous solution. The calculations are performed at the SCF and MP2 levels with inclusion of SCF-level entropic and thermochemical corrections to yield free energies of dissociation, using the basis sets 6-31G**, 6-31+G**, 6-311G(2d,2p), and 6-311+G(2d,2p) and the recently parametrized continuum−solvation method PCM-UAHF for the solvation contribution. Relative pKa trends are reproduced well with correlation coefficients (adjusted for degrees of freedom) of up to 0.97 and standard errors down to 0.24 log units, while the computational accuracy is not sufficient for predicting absolute proton-transfer energies. The latter is mainly caused by deficiencies of the underlying gas-phase calculations, as is demonstrated by a separate analysis of the gas-phase and solution-phase contributions to pKa.
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