The formation of multidomain epitaxial graphene on Rh(111) under ultra-high vacuum (UHV) conditions has been characterized by scanning tunnelling microscopy (STM) measurements and density functional theory (DFT) calculations. At variance with the accepted view for strongly interacting graphene-metal systems, we clearly demonstrate the formation of different rotational domains leading to multiple moiré structures with a wide distribution of surface periodicities. Experiments reveal a correlation between the STM apparent corrugation and the lattice parameter of the moiré unit cell, with corrugations of just 30-40 pm for the smallest moirés. DFT calculations for a relevant selection of these moiré patterns show much larger height differences a...
We report on the strengths and limitations of scanning tunnelling microscopy (STM) when used for cha...
International audienceStrains strongly affect the properties of low-dimensional materials, such as g...
Graphene on copper is a system of high technological relevance, as Cu is one of the most widely use...
Topographic scanning tunneling microscopy (STM) images of epitaxial single layer graphene on the Rh(...
Elaborate density functional theory (DFT) calculations that include the effect of van der Waals (vdW...
Oral presentation given at the European Conference on Surface Crystallography and Dynamics (ECSCD-12...
Recently, atomic resolved scanning tunneling microscopy investigations revealed that, depending on t...
The interpretation of scanning tunneling spectroscopy (STS) and scanning tunneling microscopy measur...
Resumen del trabajo presentado al Symposium on Surface Science (3S), celebrado en Baqueira Beret, Ll...
By means of synchrotron-radiation-based core-level spectroscopies we demonstrate that the degree of ...
A graphene layer on a transition-metal (TM) surface can be either corrugated or flat, depending on t...
In this thesis, graphene (i.e. monolayer carbon film) and carbon clusters supported on a transition ...
AbstractThe simultaneous combination of scanning probe methods (tunneling and force microscopies, ST...
A graphene layer on a transition-metal (TM) surface can be either corrugated or flat, depending on t...
Monolayer graphene grown on Ru(0001) surfaces forms a superstructure with periodic modulations in it...
We report on the strengths and limitations of scanning tunnelling microscopy (STM) when used for cha...
International audienceStrains strongly affect the properties of low-dimensional materials, such as g...
Graphene on copper is a system of high technological relevance, as Cu is one of the most widely use...
Topographic scanning tunneling microscopy (STM) images of epitaxial single layer graphene on the Rh(...
Elaborate density functional theory (DFT) calculations that include the effect of van der Waals (vdW...
Oral presentation given at the European Conference on Surface Crystallography and Dynamics (ECSCD-12...
Recently, atomic resolved scanning tunneling microscopy investigations revealed that, depending on t...
The interpretation of scanning tunneling spectroscopy (STS) and scanning tunneling microscopy measur...
Resumen del trabajo presentado al Symposium on Surface Science (3S), celebrado en Baqueira Beret, Ll...
By means of synchrotron-radiation-based core-level spectroscopies we demonstrate that the degree of ...
A graphene layer on a transition-metal (TM) surface can be either corrugated or flat, depending on t...
In this thesis, graphene (i.e. monolayer carbon film) and carbon clusters supported on a transition ...
AbstractThe simultaneous combination of scanning probe methods (tunneling and force microscopies, ST...
A graphene layer on a transition-metal (TM) surface can be either corrugated or flat, depending on t...
Monolayer graphene grown on Ru(0001) surfaces forms a superstructure with periodic modulations in it...
We report on the strengths and limitations of scanning tunnelling microscopy (STM) when used for cha...
International audienceStrains strongly affect the properties of low-dimensional materials, such as g...
Graphene on copper is a system of high technological relevance, as Cu is one of the most widely use...