Ground and excited state dipoles and polarizabilities of the chromophores N-methyl-6-oxyquinolinium betaine (MQ) and coumarin 153 (C153) in solution have been evaluated using time-dependent density functional theory (TD-DFT). A method for determining the atomic polarizabilities has been developed; the molecular dipole has been decomposed into atomic charge transfer and polarizability terms, and variation in the presence of an electric field has been used to evaluate atomic polarizabilities. On excitation, MQ undergoes very site-specific changes in polarizability while C153 shows significantly less variation. We also conclude that MQ cannot be adequately described by standard atomic polarizabilities based on atomic number and hybridization s...
Recently we reported a combined QM/MM approach to estimate condensed-phase values of atomic polariza...
Knowledge of the electrical charge distribution and polarizability of a molecule is essential for th...
In this work, we studied influences on the absorption and fluorescence emission spectra of coumarin-...
Ground and excited state dipoles and polarizabilities of the chromophores N-methyl-6-oxyquinolinium ...
The inclusion of explicit polarization in molecular dynamics simulation has gained increasing intere...
Aiming to assess the environmental effects on the dipole moments and polarizabilities of electronica...
Aiming to assess the environmental effects on the dipole moments and polarizabilities of electronica...
This paper provides an overview of recent research activities concerning the quantum-mechanical desc...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
A hybrid quantum mechanics/molecular mechanics (QM/MM) method for the electronic excited states has ...
In this paper, time-dependent density functional theory (TDDFT) calculations of excited state polari...
ABSTRACT: In order to carry out a detailed analysis of the molecular static polarizability, which is...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
We present a systematic investigation of the influence of polarization effects from a surrounding me...
Recently we reported a combined QM/MM approach to estimate condensed-phase values of atomic polariza...
Knowledge of the electrical charge distribution and polarizability of a molecule is essential for th...
In this work, we studied influences on the absorption and fluorescence emission spectra of coumarin-...
Ground and excited state dipoles and polarizabilities of the chromophores N-methyl-6-oxyquinolinium ...
The inclusion of explicit polarization in molecular dynamics simulation has gained increasing intere...
Aiming to assess the environmental effects on the dipole moments and polarizabilities of electronica...
Aiming to assess the environmental effects on the dipole moments and polarizabilities of electronica...
This paper provides an overview of recent research activities concerning the quantum-mechanical desc...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
A hybrid quantum mechanics/molecular mechanics (QM/MM) method for the electronic excited states has ...
In this paper, time-dependent density functional theory (TDDFT) calculations of excited state polari...
ABSTRACT: In order to carry out a detailed analysis of the molecular static polarizability, which is...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
We present a systematic investigation of the influence of polarization effects from a surrounding me...
Recently we reported a combined QM/MM approach to estimate condensed-phase values of atomic polariza...
Knowledge of the electrical charge distribution and polarizability of a molecule is essential for th...
In this work, we studied influences on the absorption and fluorescence emission spectra of coumarin-...