We investigate the impact of electronic polarization, charge delocalization, and energetic disorder on the charge-transfer (CT) states formed at a planar C<sub>60</sub>/pentacene interface. The ability to examine large complexes containing up to seven pentacene molecules and three C<sub>60</sub> molecules allows us to take explicitly into account the electronic polarization effects. These complexes are extracted from a bilayer architecture modeled by molecular dynamics simulations and evaluated by means of electronic-structure calculations based on long-range-separated functionals (ωB97XD and BNL) with optimized range-separation parameters. The energies of the lowest charge-transfer states derived for the large complexes are in very good ag...
Singlet fission is a multiple-exciton-generation process found in organic materials that could help ...
In recent years there is a considerable interest for singlet fission as a strategy to further increa...
Efficient organic solar cells are based on (electron) donor-acceptor heterojunctions. An optically g...
Electronic delocalization effects have been proposed to play a key role in photocurrent generation i...
Density functional theory (DFT) approaches based on range-separated hybrid functionals are currently...
Predicting electronically excited states across electron-donor/electron acceptor interfaces is essen...
We calculated the energy landscape of charged molecules that is determined by electrostatic and indu...
Despite the poor screening of the Coulomb potential in organic semiconductors, excitons can dissocia...
We calculated the energy landscape of charged molecules that is determined by electrostatic and indu...
Using a range of realistic interface geometries obtained from a molecular dynamics simulation we stu...
Fission of the lowest-energy singlet exciton (S1) to two lowest-energy triplet excitons (T1) in pent...
We demonstrate that efficient and nearly field-independent charge separation of electron hole pairs ...
Polarization energy corresponds to the stabilization of the cation or anion state of an atom or mole...
Organic electronic materials, possessing conjugated π-systems, are extensively used as the active la...
Efficient organic solar cells are based on (electron) donor–acceptor heterojunctions. An optically g...
Singlet fission is a multiple-exciton-generation process found in organic materials that could help ...
In recent years there is a considerable interest for singlet fission as a strategy to further increa...
Efficient organic solar cells are based on (electron) donor-acceptor heterojunctions. An optically g...
Electronic delocalization effects have been proposed to play a key role in photocurrent generation i...
Density functional theory (DFT) approaches based on range-separated hybrid functionals are currently...
Predicting electronically excited states across electron-donor/electron acceptor interfaces is essen...
We calculated the energy landscape of charged molecules that is determined by electrostatic and indu...
Despite the poor screening of the Coulomb potential in organic semiconductors, excitons can dissocia...
We calculated the energy landscape of charged molecules that is determined by electrostatic and indu...
Using a range of realistic interface geometries obtained from a molecular dynamics simulation we stu...
Fission of the lowest-energy singlet exciton (S1) to two lowest-energy triplet excitons (T1) in pent...
We demonstrate that efficient and nearly field-independent charge separation of electron hole pairs ...
Polarization energy corresponds to the stabilization of the cation or anion state of an atom or mole...
Organic electronic materials, possessing conjugated π-systems, are extensively used as the active la...
Efficient organic solar cells are based on (electron) donor–acceptor heterojunctions. An optically g...
Singlet fission is a multiple-exciton-generation process found in organic materials that could help ...
In recent years there is a considerable interest for singlet fission as a strategy to further increa...
Efficient organic solar cells are based on (electron) donor-acceptor heterojunctions. An optically g...