International audienceWe present a novel hybrid quantum/classical approach to the calculation of charged excitations in molecular solids based on the many-body Green's function GW formalism. Molecules described at the GW level are embedded into the crystalline environment modeled with an accurate classical polarizable scheme. This allows the calculation of electron addition and removal energies in the bulk and at crystal surfaces where charged excitations are probed in photoelectron experiments. By considering the paradigmatic case of pentacene and perfluoropentacene crystals, we discuss the different contributions from intermolecular interactions to electronic energy levels, distinguishing between polarization, which is accounted for combi...
An additive quantum mechanics/molecular mechanics (QM/MM) model for the theoretical investigation of...
Organic electronic materials, possessing conjugated π-systems, are extensively used as the active la...
Many-body Green's functions theory within the GW approximation and the Bethe-Salpeter Equation (BSE)...
International audienceWe present a novel hybrid quantum/classical approach to the calculation of cha...
We present an original hybrid QM/MM scheme merging the many-body Green’s function GW formalism with ...
The electrostatic polarization energies have been calculated for 17 molecular crystals, including so...
We present a framework for obtaining reliable solid-state charge and optical excitations and spectra...
The self-consistent computation of electronic polarization in organic molecular crystals is extended...
180 p.The theory describing the interaction between light and matter at nanoscale is nearly as old a...
The energy of interaction between molecules is commonly expressed in terms of four key components: e...
Polarization energy corresponds to the stabilization of the cation or anion state of an atom or mole...
The impact of atomic charge definition for describing the crystal polarizing electric field has been...
We extend the generalized energy-based fragmentation (GEBF) approach to molecular crystals under per...
Because of the way the electrostatic potential is defined in a crystal, it is not possible to determ...
International audienceMany-body Green's function perturbation theories, such as the GW and Bethe-Sal...
An additive quantum mechanics/molecular mechanics (QM/MM) model for the theoretical investigation of...
Organic electronic materials, possessing conjugated π-systems, are extensively used as the active la...
Many-body Green's functions theory within the GW approximation and the Bethe-Salpeter Equation (BSE)...
International audienceWe present a novel hybrid quantum/classical approach to the calculation of cha...
We present an original hybrid QM/MM scheme merging the many-body Green’s function GW formalism with ...
The electrostatic polarization energies have been calculated for 17 molecular crystals, including so...
We present a framework for obtaining reliable solid-state charge and optical excitations and spectra...
The self-consistent computation of electronic polarization in organic molecular crystals is extended...
180 p.The theory describing the interaction between light and matter at nanoscale is nearly as old a...
The energy of interaction between molecules is commonly expressed in terms of four key components: e...
Polarization energy corresponds to the stabilization of the cation or anion state of an atom or mole...
The impact of atomic charge definition for describing the crystal polarizing electric field has been...
We extend the generalized energy-based fragmentation (GEBF) approach to molecular crystals under per...
Because of the way the electrostatic potential is defined in a crystal, it is not possible to determ...
International audienceMany-body Green's function perturbation theories, such as the GW and Bethe-Sal...
An additive quantum mechanics/molecular mechanics (QM/MM) model for the theoretical investigation of...
Organic electronic materials, possessing conjugated π-systems, are extensively used as the active la...
Many-body Green's functions theory within the GW approximation and the Bethe-Salpeter Equation (BSE)...