We present a computational study of polarizabilities and hyperpolarizabilities of organic molecules in aqueous solutions, focusing on solute-water interactions and the way they affect a molecule's linear and non-linear electric response properties. We employ a polarizable quantum mechanics/molecular mechanics (QM/MM) computational model that treats the solute at the QM level while the solvent is treated classically using a force field that includes polarizable charges and dipoles, which dynamically respond to the solute's quantum-mechanical electron density. Quantum confinement effects are also treated by means of a recently implemented method that endows solvent molecules with a parametric electron density, which exerts Pauli repulsion for...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A polarizable quantum mechanics and molecular mechanics model has been extended to account for the d...
We present a computational study of polarizabilities and hyperpolarizabilities of organic molecules ...
We illustrate the effect of solvation on the nature of electronic excitations of organic molecules w...
We present the extension to second harmonic generation (SHG) of the atomistic fully polarizable QM/F...
The fully polarizable Quantum Mechanics/Molecular Mechanics (QM/MM) approach based on fluctuating ch...
We present the extension to second harmonic generation (SHG) of the atomistic fully polarizable QM/F...
The fully polarizable Quantum Mechanics/Molecular Mechanics (QM/MM) approach based on fluctuating ch...
The fully polarizable Quantum Mechanics/Molecular Mechanics (QM/MM) approach based on fluctuating ch...
A study of the effect of solute/solvent interactions on static and dynamic molecular hyperpolarizabi...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
Despite the potentialities of the quantum mechanics (QM)/fluctuating charge (FQ) approach to model t...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A polarizable quantum mechanics and molecular mechanics model has been extended to account for the d...
We present a computational study of polarizabilities and hyperpolarizabilities of organic molecules ...
We illustrate the effect of solvation on the nature of electronic excitations of organic molecules w...
We present the extension to second harmonic generation (SHG) of the atomistic fully polarizable QM/F...
The fully polarizable Quantum Mechanics/Molecular Mechanics (QM/MM) approach based on fluctuating ch...
We present the extension to second harmonic generation (SHG) of the atomistic fully polarizable QM/F...
The fully polarizable Quantum Mechanics/Molecular Mechanics (QM/MM) approach based on fluctuating ch...
The fully polarizable Quantum Mechanics/Molecular Mechanics (QM/MM) approach based on fluctuating ch...
A study of the effect of solute/solvent interactions on static and dynamic molecular hyperpolarizabi...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
Despite the potentialities of the quantum mechanics (QM)/fluctuating charge (FQ) approach to model t...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A polarizable quantum mechanics and molecular mechanics model has been extended to account for the d...