TY - JOUR
T1 - The IEF version of the PCM solvation method
T2 - An overview of a new method addressed to study molecular solutes at the QM ab initio level
AU - Tomasi, J.
AU - Mennucci, B.
AU - Cancès, E.
PY - 1999/5/18
Y1 - 1999/5/18
N2 - The integral equation formalism (IEF) is a recent method (the grounds have been elaborated at the beginning of 1997) addressed to solve the electrostatic solvation problem at the QM level with the aid of apparent surface charges (ASC). IEF uses a new formalism of this problem, based on integral operators never used before in the chemical community and it manages to treat on the same footing linear isotropic solvent models, as well as anisotropic liquid crystals and ionic solutions. In this overview we emphasize the good performances of IEF at the lowest level of its potentialities, i.e. for isotropic solvents, as a new approach to compute solvation free energies and properties (dipole hyperpolarizabilities) of molecular solutes, as well as energy gradients for geometry optimization procedures. Finally we present a new IEF implementation of the nonequilibrium problem for electronic spectra which appears to be decidedly competitive with the previous more standard ASC formulations.
AB - The integral equation formalism (IEF) is a recent method (the grounds have been elaborated at the beginning of 1997) addressed to solve the electrostatic solvation problem at the QM level with the aid of apparent surface charges (ASC). IEF uses a new formalism of this problem, based on integral operators never used before in the chemical community and it manages to treat on the same footing linear isotropic solvent models, as well as anisotropic liquid crystals and ionic solutions. In this overview we emphasize the good performances of IEF at the lowest level of its potentialities, i.e. for isotropic solvents, as a new approach to compute solvation free energies and properties (dipole hyperpolarizabilities) of molecular solutes, as well as energy gradients for geometry optimization procedures. Finally we present a new IEF implementation of the nonequilibrium problem for electronic spectra which appears to be decidedly competitive with the previous more standard ASC formulations.
KW - Electric properties
KW - Electronic transitions
KW - Free energy gradients
KW - Integral equation formalism
KW - Model
KW - Solvation
UR - https://www.scopus.com/pages/publications/84962428823
U2 - 10.1016/S0166-1280(98)00553-3
DO - 10.1016/S0166-1280(98)00553-3
M3 - Article
AN - SCOPUS:84962428823
SN - 0166-1280
VL - 464
SP - 211
EP - 226
JO - Journal of Molecular Structure: THEOCHEM
JF - Journal of Molecular Structure: THEOCHEM
IS - 1-3
ER -