International audienceNon-covalent doping by pure charge transfer complexes is one possible solution to tune at low-cost electronic properties of carbon-based nanostructures, more specifically to enhance their conductivity. Here, we present a thorough density functional theory-based study of charge transfer estimates, by comparing available integration/partitioning scheme of the electronic density in periodic boundary conditions, as well as the influence of the exchange-correlation term, the cornerstone of DFT by testing various exchange-correlation functionals. Our test case is made of a freestanding graphene monolayer in interaction with two prototypical donor/acceptor molecules: TTF and TCNE. These results illustrate the role played by t...
We outline a Kohn-Sham-Dirac density functional theory (DFT) scheme for graphene sheets that treats ...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
We performed density-functional theory calculations to study the electronic structures at the interf...
International audienceNon-covalent doping by pure charge transfer complexes is one possible solution...
Density functional theory calculations have been performed to assess the electronic structure of gra...
We investigate charge transfer in prototypical molecular donor-acceptor compounds using hybrid densi...
Insulating semiconducting conductors? The electronic properties of graphene can be tuned through mol...
Our density functional theory analysis of charge transfer (CT) influence of annealed, pendant, and a...
Density functional calculations are used to analyze the charge transfer doping mechanism by molecule...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
The description of ground state charge-transfer complexes is highly challenging. Illustrative exampl...
By employing X-ray photoelectron spectroscopy (XPS), we have been able to establish the occurrence o...
Charge transfer at the interface between dissimilar materials is at the heart of electronics and pho...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...
We outline a Kohn-Sham-Dirac density functional theory (DFT) scheme for graphene sheets that treats ...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
We performed density-functional theory calculations to study the electronic structures at the interf...
International audienceNon-covalent doping by pure charge transfer complexes is one possible solution...
Density functional theory calculations have been performed to assess the electronic structure of gra...
We investigate charge transfer in prototypical molecular donor-acceptor compounds using hybrid densi...
Insulating semiconducting conductors? The electronic properties of graphene can be tuned through mol...
Our density functional theory analysis of charge transfer (CT) influence of annealed, pendant, and a...
Density functional calculations are used to analyze the charge transfer doping mechanism by molecule...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
The description of ground state charge-transfer complexes is highly challenging. Illustrative exampl...
By employing X-ray photoelectron spectroscopy (XPS), we have been able to establish the occurrence o...
Charge transfer at the interface between dissimilar materials is at the heart of electronics and pho...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...
We outline a Kohn-Sham-Dirac density functional theory (DFT) scheme for graphene sheets that treats ...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
We performed density-functional theory calculations to study the electronic structures at the interf...