| Literature DB >> 16497026 |
Damián A Scherlis1, Jean-Luc Fattebert, François Gygi, Matteo Cococcioni, Nicola Marzari.
Abstract
The electrostatic continuum solvent model developed by [Fattebert and Gygi J. Comput. Chem. 23, 662 (2002); Int. J. Quantum Chem. 93, 139 (2003)] is combined with a first-principles formulation of the cavitation energy based on a natural quantum-mechanical definition for the surface of a solute. Despite its simplicity, the cavitation contribution calculated by this approach is found to be in remarkable agreement with that obtained by more complex algorithms relying on a large set of parameters. Our model allows for very efficient Car-Parrinello simulations of finite or extended systems in solution and demonstrates a level of accuracy as good as that of established quantum-chemistry continuum solvent methods. We apply this approach to the study of tetracyanoethylene dimers in dichloromethane, providing valuable structural and dynamical insights on the dimerization phenomenon.Entities:
Year: 2006 PMID: 16497026 DOI: 10.1063/1.2168456
Source DB: PubMed Journal: J Chem Phys ISSN: 0021-9606 Impact factor: 3.488