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Energies, structures, and electronic properties of molecules in solution with the C‐PCM solvation model

Journal of Computational Chemistry · 2003 · Vol. 24(6) · pp. 669–681
Maurizio CossiNadia RegaGiovanni ScalmaniVincenzo Barone

Abstract

The conductor-like solvation model, as developed in the framework of the polarizable continuum model (PCM), has been reformulated and newly implemented in order to compute energies, geometric structures, harmonic frequencies, and electronic properties in solution for any chemical system that can be studied in vacuo. Particular attention is devoted to large systems requiring suitable iterative algorithms to compute the solvation charges: the fast multipole method (FMM) has been extensively used to ensure a linear scaling of the computational times with the size of the solute. A number of test applications are presented to evaluate the performances of the method.

Spectroscopy and Quantum Chemical StudiesPhotochemistry and Electron Transfer StudiesAdvanced Chemical Physics StudiesSolvationMultipole expansionPolarizable continuum modelElectronic structureConductorImplicit solvationLinear scaleScalingPolarizabilityStatistical physics
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References
Toward reliable density functional methods without adjustable parameters: The PBE0 model
The Journal of Chemical Physics · 1999 · 18,439 citations
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