We compare different response schemes for coupling continuum solvation models to time-dependent density functional theory (TD-DFT) for the determination of solvent effects on the excited state dipole moments of solvated molecules. In particular, linear-response (LR) and state-specific (SS) formalisms are compared. Using 20 low-lying electronic excitations, displaying both localized and charge-transfer character, this study highlights the importance of applying a SS model not only for the calculation of energies, as previously reported (J. Chem. Theory Comput., 2015, 11, 5782, DOI: 10.1021/acs.jctc.5b00679), but also for the prediction of excited state properties. Generally, when a range-separated exchange-correlation functional is used, bot...
In a recent article (R. Cammi, S. Corni, B. Mennucci, and J. Tomasi, J. Chem. Phys. 122, 104513,2005...
Different ways to extract properties of excited states from time-dependent density functional theory...
Different ways to extract properties of excited states from time-dependent density functional theory...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
In a recent article (R. Cammi, S. Corni, B. Mennucci, and J. Tomasi, J. Chem. Phys. 122, 104513,2005...
Different ways to extract properties of excited states from time-dependent density functional theory...
Different ways to extract properties of excited states from time-dependent density functional theory...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
We critically analyze the performances of continuum solvation models when coupled to time-dependent ...
In a recent article (R. Cammi, S. Corni, B. Mennucci, and J. Tomasi, J. Chem. Phys. 122, 104513,2005...
Different ways to extract properties of excited states from time-dependent density functional theory...
Different ways to extract properties of excited states from time-dependent density functional theory...