In this communication, we present results of theoretical studies of various systems where Van der Waals interaction plays a considerable role. In the first-principle calculations performed in the density functional theory framework we implement novel functionals accounting for Van der Waals forces and employ to the test cases of graphite and graphene layers. It turns out that this approach provides a solution to the long standing problem of overbinding between graphene layers in bulk graphite, giving the distance between the carbon layers in excellent agreement with experiment. In graphene bilayers, Van der Waals functionals lead to energetic barriers for A-B to A-A ordering of graphene bilayers that are by a factor of two smaller than the ...
Graphene is a two-dimensional (2D) crystal of carbon atoms packed in a honeycomb lattice. Because of...
The adsorption of benzene and C60 on graphene and boron nitride is studied using density functional ...
Theoretical formulations capable of modeling chemical interactions over 3-4 orders of magnitude of b...
The details of a density functional that includes van der Waals (vdW) interactions are presented. In...
The interaction between graphene layers is analyzed combining local orbital DFT and second order pe...
A “best-of-both-worlds” van der Waals (vdW) density functional is constructed, seamlessly supplement...
We use density functional theoryand the van der Waals density functional (vdW-DF) methodto determin...
Carbon nanomaterials have attracted much attention because they are candidates for post-silicon mate...
We outline a Kohn-Sham-Dirac density functional theory (DFT) scheme for graphene sheets that treats ...
AbstractThis paper presents a comparative first principles study of van der Waals heterobilayers der...
Ubiquitous van der Waals interactions between atoms and molecules are important for many molecular a...
We have developed a semiempirical method to obtain interlayer binding energy of graphite in the prev...
We use scanning tunneling microscopy to visualize and thermal desorption spectroscopy to quantitativ...
The recently developed, efficient DFT/vdW-WF method for the inclusion of the van der Waals interacti...
The DFT/vdW-QHO-WF method, recently developed to include the van der Waals (vdW) interactions in app...
Graphene is a two-dimensional (2D) crystal of carbon atoms packed in a honeycomb lattice. Because of...
The adsorption of benzene and C60 on graphene and boron nitride is studied using density functional ...
Theoretical formulations capable of modeling chemical interactions over 3-4 orders of magnitude of b...
The details of a density functional that includes van der Waals (vdW) interactions are presented. In...
The interaction between graphene layers is analyzed combining local orbital DFT and second order pe...
A “best-of-both-worlds” van der Waals (vdW) density functional is constructed, seamlessly supplement...
We use density functional theoryand the van der Waals density functional (vdW-DF) methodto determin...
Carbon nanomaterials have attracted much attention because they are candidates for post-silicon mate...
We outline a Kohn-Sham-Dirac density functional theory (DFT) scheme for graphene sheets that treats ...
AbstractThis paper presents a comparative first principles study of van der Waals heterobilayers der...
Ubiquitous van der Waals interactions between atoms and molecules are important for many molecular a...
We have developed a semiempirical method to obtain interlayer binding energy of graphite in the prev...
We use scanning tunneling microscopy to visualize and thermal desorption spectroscopy to quantitativ...
The recently developed, efficient DFT/vdW-WF method for the inclusion of the van der Waals interacti...
The DFT/vdW-QHO-WF method, recently developed to include the van der Waals (vdW) interactions in app...
Graphene is a two-dimensional (2D) crystal of carbon atoms packed in a honeycomb lattice. Because of...
The adsorption of benzene and C60 on graphene and boron nitride is studied using density functional ...
Theoretical formulations capable of modeling chemical interactions over 3-4 orders of magnitude of b...