We use scanning tunneling microscopy to visualize and thermal desorption spectroscopy to quantitatively measure that the binding of naphthalene molecules to graphene, a case of pure van der Waals interaction, strengthens with n and weakens with p doping of graphene. Density-functional theory calculations that include the van der Waals interaction in a seamless, ab initio way accurately reproduce the observed trend in binding energies. Based on a model calculation, we propose that the van der Waals interaction is modified by changing the spatial extent of graphene’s π orbitals via doping
Layered materials, such as graphene, have attracted increasing interests since they can be extensive...
Making devices with graphene necessarily involves making contacts with metals. We use density functi...
We investigate the interaction between water and metal-supported graphene through van der Waals dens...
The interaction between graphene layers is analyzed combining local orbital DFT and second order pe...
In this communication, we present results of theoretical studies of various systems where Van der Wa...
An early van der Waals density functional (vdW-DF) described layered systems (such as graphite and g...
The DFT/vdW-QHO-WF method, recently developed to include the van der Waals (vdW) interactions in app...
cited By 20International audienceMany potential applications of graphene require either the possibil...
Doping graphene with electron donating or accepting molecules is an interesting approach to introduc...
Doping graphene with electron donating or accepting molecules is an interesting approach to introd...
The adsorption of neutral (poly)-aromatic, antiaromatic, and more generally π-conjugated systems on ...
van der Waals (vdW) interactions play a central role in the surface-related physics and chemistry. T...
International audienceGraphene-based two-dimensional materials have attracted an increasing attentio...
Density functional theory (DFT) is a powerful approach to electronic structure calculations in exten...
The neighboring layers in bilayer (and few-layer) graphenes of both AA and AB stacking motifs are kn...
Layered materials, such as graphene, have attracted increasing interests since they can be extensive...
Making devices with graphene necessarily involves making contacts with metals. We use density functi...
We investigate the interaction between water and metal-supported graphene through van der Waals dens...
The interaction between graphene layers is analyzed combining local orbital DFT and second order pe...
In this communication, we present results of theoretical studies of various systems where Van der Wa...
An early van der Waals density functional (vdW-DF) described layered systems (such as graphite and g...
The DFT/vdW-QHO-WF method, recently developed to include the van der Waals (vdW) interactions in app...
cited By 20International audienceMany potential applications of graphene require either the possibil...
Doping graphene with electron donating or accepting molecules is an interesting approach to introduc...
Doping graphene with electron donating or accepting molecules is an interesting approach to introd...
The adsorption of neutral (poly)-aromatic, antiaromatic, and more generally π-conjugated systems on ...
van der Waals (vdW) interactions play a central role in the surface-related physics and chemistry. T...
International audienceGraphene-based two-dimensional materials have attracted an increasing attentio...
Density functional theory (DFT) is a powerful approach to electronic structure calculations in exten...
The neighboring layers in bilayer (and few-layer) graphenes of both AA and AB stacking motifs are kn...
Layered materials, such as graphene, have attracted increasing interests since they can be extensive...
Making devices with graphene necessarily involves making contacts with metals. We use density functi...
We investigate the interaction between water and metal-supported graphene through van der Waals dens...