The interaction between graphene layers is analyzed combining local orbital DFT and second order perturbation theory. For this purpose we use the Linear Combination of Atomic Orbitals -Orbital Occupancy (LCAO-OO) formalism, that allows us to separate the interaction energy as a sum of a weak chemical interaction between graphene layers plus the van der Waals interaction [1]. In this work, the weak chemical interaction is calculated by means of corrected-LDA calculations using an atomic-like sp3d5 basis set. The van der Waals interaction is calculated by means of second order perturbation theory using an atom-atom interaction approximation and the atomiclike orbital occupancies. We also analyze the effect of dynamical screening in the...
We consider the effect of atomic hydrogen exposure to a system of two undoped sheets of graphene gro...
Undoped-graphene (Gr) sheets at low temperatures are known, via random-phase-approximation (RPA) cal...
We report diffusion quantum Monte Carlo calculations of the interlayer binding energy of bilayer gra...
The DFT/vdW-QHO-WF method, recently developed to include the van der Waals (vdW) interactions in app...
The DFT/vdW-QHO-WF method, recently developed to include the van der Waals (vdW) interactions in app...
In this communication, we present results of theoretical studies of various systems where Van der Wa...
We use scanning tunneling microscopy to visualize and thermal desorption spectroscopy to quantitativ...
This article reviews the different density functional theory (DFT) methods available in the literatu...
Fullerenes on single-layer epitaxial graphene are a model system to study very faint interactions at...
Fullerenes on single-layer epitaxial graphene are a model system to study very faint interactions at...
© 2018 National Academy of Sciences. All rights reserved. General properties of the recently observe...
Novel two-dimensional, atomically thin materials, notably graphene and transition-metal dichalcogeni...
The method to calculate van der Waals interactions based on maximally localized Wannier functions (M...
Density functional theory is a very important method for calculating ground-state properties for ato...
Dispersion forces play a major role in graphene, largely influencing adhesion of adsorbate moieties ...
We consider the effect of atomic hydrogen exposure to a system of two undoped sheets of graphene gro...
Undoped-graphene (Gr) sheets at low temperatures are known, via random-phase-approximation (RPA) cal...
We report diffusion quantum Monte Carlo calculations of the interlayer binding energy of bilayer gra...
The DFT/vdW-QHO-WF method, recently developed to include the van der Waals (vdW) interactions in app...
The DFT/vdW-QHO-WF method, recently developed to include the van der Waals (vdW) interactions in app...
In this communication, we present results of theoretical studies of various systems where Van der Wa...
We use scanning tunneling microscopy to visualize and thermal desorption spectroscopy to quantitativ...
This article reviews the different density functional theory (DFT) methods available in the literatu...
Fullerenes on single-layer epitaxial graphene are a model system to study very faint interactions at...
Fullerenes on single-layer epitaxial graphene are a model system to study very faint interactions at...
© 2018 National Academy of Sciences. All rights reserved. General properties of the recently observe...
Novel two-dimensional, atomically thin materials, notably graphene and transition-metal dichalcogeni...
The method to calculate van der Waals interactions based on maximally localized Wannier functions (M...
Density functional theory is a very important method for calculating ground-state properties for ato...
Dispersion forces play a major role in graphene, largely influencing adhesion of adsorbate moieties ...
We consider the effect of atomic hydrogen exposure to a system of two undoped sheets of graphene gro...
Undoped-graphene (Gr) sheets at low temperatures are known, via random-phase-approximation (RPA) cal...
We report diffusion quantum Monte Carlo calculations of the interlayer binding energy of bilayer gra...