We present a generalized formulation for the combination of the density functional tight binding (DFTB) approach and the state-interaction state-average spin-restricted ensemble-referenced Kohn-Sham (SI-SA-REKS or SSR) method by considering onsite correction (OC) as well as the long-range corrected (LC) functional. The OC contribution provides more accurate energies and analytic gradients for individual microstates, while the multireference character of the SSR provides the correct description for conical intersections. We benchmark the LC-OC-DFTB/SSR method against various DFTB calculation methods for excitation energies and conical intersection structures with pi/pi* or n/pi* characters. Furthermore, we perform excited-state molecular dyn...
International audienceWe present a benchmark of the performances of the density functional tight-bin...
A spin-adapted configuration interaction with singles method that is based on a restricted open-shel...
The density functional based tight binding method (DFTB) is an approximation of Kohn-Sham (KS) DFT w...
The spin-restricted ensemble-referenced Kohn-Sham (REKS) method and its state-interaction state aver...
Conical intersections control excited state reactivity and thus elucidation and prediction of their ...
Conical intersections control excited state reactivity, and thus, elucidating and predicting their g...
The state-averaged (SA) spin restricted ensemble referenced Kohn-Sham(REKS) method and its state int...
WOS:000354775800005International audienceState-averaged (SA) variants of the spin-restricted ensembl...
We present a consistent linear response formulation of the density functional based tight-binding me...
An extended variant of the spin-restricted ensemble-referenced Kohn-Sham (REKS) method, the REKS(4,4...
A time-independent density functional approach to the calculation of excitation energies from the gr...
The operation of synthetic light-driven rotary molecular motors is based on the photoisomerizationpr...
We present the use of the recently developed square gradient minimization (SGM) algorithm for excite...
In this study, excited-state free energies and geometries were efficiently evaluated using a linear-...
A novel energy decomposition analysis scheme, named DFTB-EDA, is proposed based on the density funct...
International audienceWe present a benchmark of the performances of the density functional tight-bin...
A spin-adapted configuration interaction with singles method that is based on a restricted open-shel...
The density functional based tight binding method (DFTB) is an approximation of Kohn-Sham (KS) DFT w...
The spin-restricted ensemble-referenced Kohn-Sham (REKS) method and its state-interaction state aver...
Conical intersections control excited state reactivity and thus elucidation and prediction of their ...
Conical intersections control excited state reactivity, and thus, elucidating and predicting their g...
The state-averaged (SA) spin restricted ensemble referenced Kohn-Sham(REKS) method and its state int...
WOS:000354775800005International audienceState-averaged (SA) variants of the spin-restricted ensembl...
We present a consistent linear response formulation of the density functional based tight-binding me...
An extended variant of the spin-restricted ensemble-referenced Kohn-Sham (REKS) method, the REKS(4,4...
A time-independent density functional approach to the calculation of excitation energies from the gr...
The operation of synthetic light-driven rotary molecular motors is based on the photoisomerizationpr...
We present the use of the recently developed square gradient minimization (SGM) algorithm for excite...
In this study, excited-state free energies and geometries were efficiently evaluated using a linear-...
A novel energy decomposition analysis scheme, named DFTB-EDA, is proposed based on the density funct...
International audienceWe present a benchmark of the performances of the density functional tight-bin...
A spin-adapted configuration interaction with singles method that is based on a restricted open-shel...
The density functional based tight binding method (DFTB) is an approximation of Kohn-Sham (KS) DFT w...