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Quantum Calculation of Molecular Energies and Energy Gradients in Solution by a Conductor Solvent Model

1998·9.871 Zitationen·The Journal of Physical Chemistry A
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9.871

Zitationen

2

Autoren

1998

Jahr

Abstract

A new implementation of the conductor-like screening solvation model (COSMO) in the GAUSSIAN94 package is presented. It allows Hartree−Fock (HF), density functional (DF) and post-HF energy, and HF and DF gradient calculations: the cavities are modeled on the molecular shape, using recently optimized parameters, and both electrostatic and nonelectrostatic contributions to energies and gradients are considered. The calculated solvation energies for 19 neutral molecules in water are found in very good agreement with experimental data; the solvent-induced geometry relaxation is studied for some closed and open shell molecules, at HF and DF levels. The computational times are very satisfying: the self-consistent energy evaluation needs a time 15−30% longer than the corresponding procedure in vacuo, whereas the calculation of energy gradients is only 25% longer than in vacuo for medium size molecules.

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Autoren

Institutionen

Themen

Spectroscopy and Quantum Chemical StudiesFree Radicals and AntioxidantsPhotochemistry and Electron Transfer Studies
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