By using ab initio molecular dynamics calculations, we show that even where the graphene lattice constant contracts, as previously reported for freestanding graphene below room temperature, the average carbon-carbon distance increases with temperature, in both free and supported graphene. This results in a larger corrugation at higher temperature, which can affect the interaction between graphene and the supporting substrate. For a weakly interacting system as graphene/Ir(111), we confirm the results using an experimental approach which gives direct access to interatomic distances
Based on first-principles calculations we predict a peculiar growth process, where carbon adatoms ad...
The mechanisms of the sublimation of graphene at zero pressure and the condensation of carbon vapor ...
textThe thermomechanical properties of monolayer graphene and the interfacial interactions between g...
By using ab initio molecular dynamics calculations, we show that even where the graphene lattice con...
Low or zero thermal expansion (ZTE) materials are suitable for applications requiring low dimensiona...
CNPQ - CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICOFAPESP - FUNDAÇÃO DE AMPARO À PE...
Thermal conductivity kappa of both suspended and supported graphene has been studied by using molecu...
Path-integral molecular dynamics (PIMD) simulations have been carried out to study the influence of ...
As a two-dimensional material, graphene can be obtained via epitaxial growth on a suitable substrate...
International audienceThe effects of the temperature on the structure of a single layer of graphene ...
We studied the heat-spreading enhancement of supported few-layer graphene by inserting silane-functi...
Isotopic effects are relevant to understand several properties of solids, and have been thoroughly a...
Graphene is a flat monolayer of carbon atoms arranged in a two-dimensional hexagonal lattice. It is ...
Based on first-principles calculations and full iterative solution of the linearized Boltzmann-Peier...
The thermodynamic preference of a foreign atom for adsorption on versus intercalation into a graphit...
Based on first-principles calculations we predict a peculiar growth process, where carbon adatoms ad...
The mechanisms of the sublimation of graphene at zero pressure and the condensation of carbon vapor ...
textThe thermomechanical properties of monolayer graphene and the interfacial interactions between g...
By using ab initio molecular dynamics calculations, we show that even where the graphene lattice con...
Low or zero thermal expansion (ZTE) materials are suitable for applications requiring low dimensiona...
CNPQ - CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICOFAPESP - FUNDAÇÃO DE AMPARO À PE...
Thermal conductivity kappa of both suspended and supported graphene has been studied by using molecu...
Path-integral molecular dynamics (PIMD) simulations have been carried out to study the influence of ...
As a two-dimensional material, graphene can be obtained via epitaxial growth on a suitable substrate...
International audienceThe effects of the temperature on the structure of a single layer of graphene ...
We studied the heat-spreading enhancement of supported few-layer graphene by inserting silane-functi...
Isotopic effects are relevant to understand several properties of solids, and have been thoroughly a...
Graphene is a flat monolayer of carbon atoms arranged in a two-dimensional hexagonal lattice. It is ...
Based on first-principles calculations and full iterative solution of the linearized Boltzmann-Peier...
The thermodynamic preference of a foreign atom for adsorption on versus intercalation into a graphit...
Based on first-principles calculations we predict a peculiar growth process, where carbon adatoms ad...
The mechanisms of the sublimation of graphene at zero pressure and the condensation of carbon vapor ...
textThe thermomechanical properties of monolayer graphene and the interfacial interactions between g...