Density-functional theory and the polarizable continuum model have been used to calculate the electric-field-induced second harmonic generation of a series of push–pull phenylpolyenes in chloroform solution. The calculations have been performed using both the Becke 3-parameter Lee–Yang–Parr functional and the recently developed Coulomb-attenuated method functional. Solvation has been investigated by examining the effects of the reaction field, non-equilibrium solvation, geometry relaxation, and cavity field. The inclusion of solvent effects leads to significantly better agreement with experimental observations
Tuning of nonlinear optical (NLO) properties of organic chromophores (OCs) by stereo-electronic and ...
Time dependent density functional theory and polarizable continuum model have been used to describe ...
The electric field created by a condensed-phase environment is a powerful and convenient descriptor ...
Density-functional theory and the polarizable continuum model have been used to calculate the electr...
Density-functional-theory study of the electric-field-induced second harmonic generation (EFISHG) of...
Contemporary design of new organic non-linear optical (NLO) materials relies to a large extent on th...
Reliable computations of linear and nonlinear optical properties of molecular systems in condensed p...
We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent ...
This paper provides an overview of recent research activities concerning the quantum-mechanical desc...
We present the extension to second harmonic generation (SHG) of the atomistic fully polarizable QM/F...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
The electric field created by a condensed-phase environment is a powerful and convenient descriptor ...
International audienceThe Watson-Crick hydrogen bonded pair formed by deoxyguanosine and deoxycytidi...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
Quantum chemical calculations of para-chloroacetophenone (p-CAP) and meta-choloroacetophenone (m-CAP...
Tuning of nonlinear optical (NLO) properties of organic chromophores (OCs) by stereo-electronic and ...
Time dependent density functional theory and polarizable continuum model have been used to describe ...
The electric field created by a condensed-phase environment is a powerful and convenient descriptor ...
Density-functional theory and the polarizable continuum model have been used to calculate the electr...
Density-functional-theory study of the electric-field-induced second harmonic generation (EFISHG) of...
Contemporary design of new organic non-linear optical (NLO) materials relies to a large extent on th...
Reliable computations of linear and nonlinear optical properties of molecular systems in condensed p...
We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent ...
This paper provides an overview of recent research activities concerning the quantum-mechanical desc...
We present the extension to second harmonic generation (SHG) of the atomistic fully polarizable QM/F...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
The electric field created by a condensed-phase environment is a powerful and convenient descriptor ...
International audienceThe Watson-Crick hydrogen bonded pair formed by deoxyguanosine and deoxycytidi...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
Quantum chemical calculations of para-chloroacetophenone (p-CAP) and meta-choloroacetophenone (m-CAP...
Tuning of nonlinear optical (NLO) properties of organic chromophores (OCs) by stereo-electronic and ...
Time dependent density functional theory and polarizable continuum model have been used to describe ...
The electric field created by a condensed-phase environment is a powerful and convenient descriptor ...