Here we show that it is possible to intercalate CO under graphene grown on Ir(111) already at room temperature when CO pressures in the millibar regime are used. From the interplay of X-ray photoelectron spectroscopy and scanning tunneling microscopy we conclude that the intercalated CO adsorption structure is similar to the (3 root 3 X 3 root 3)R30 degrees) adsorption structure that is formed on Ir(111) upon exposure to similar to 1 mbar of CO. Further, density functional theory calculations reveal that the structural and electronic properties of CO-intercalated graphene are similar to p-doped freestanding graphene. Finally we characterize nonintercalated stripes and islands that we always observe in the CO-intercalated graphene. We observ...
International audienceUsing low-energy electron microscopy, we image in real time the intercalation ...
The ease by which graphene is affected through contact with other materials is one of its unique fea...
Thin Co films intercalated between a Graphene capping layer and the Ir(111) surface are of interest ...
The interaction strength of FePc molecules adsorbed on graphene-Co, obtained by intercalation of Co ...
3 figuresInternational audienceUsing low-energy electron microscopy, we study Co intercalation under...
Graphene have attracted attention recently due to its unique properties and opportunities for develo...
Graphene can be used to avoid the oxidation of metallic films. This work explores the effectiveness ...
Graphene can be used to avoid the oxidation of metallic films. This work explores the effectiveness ...
The aim of this project is to use scanning tunneling microscopy (STM) to investigate how a super-den...
Photoemission, from core levels and valence band, and low-energy electron diffraction (LEED) have be...
International audienceUsing X-ray reflectivity, grazing incidence X-ray diffraction, scanning tunnel...
Using high resolution X-ray photoelectron spectroscopy and scanning tunneling microscopy we study th...
Using high resolution X-ray photoelectron spectroscopy and scanning tunneling microscopy we study th...
Thin Co films intercalated between a Graphene capping layer and the Ir(111) surface are of interest ...
Using scanning tunneling microscopy, the oxygen adsorbate superstructures on bare Ir(111) are identi...
International audienceUsing low-energy electron microscopy, we image in real time the intercalation ...
The ease by which graphene is affected through contact with other materials is one of its unique fea...
Thin Co films intercalated between a Graphene capping layer and the Ir(111) surface are of interest ...
The interaction strength of FePc molecules adsorbed on graphene-Co, obtained by intercalation of Co ...
3 figuresInternational audienceUsing low-energy electron microscopy, we study Co intercalation under...
Graphene have attracted attention recently due to its unique properties and opportunities for develo...
Graphene can be used to avoid the oxidation of metallic films. This work explores the effectiveness ...
Graphene can be used to avoid the oxidation of metallic films. This work explores the effectiveness ...
The aim of this project is to use scanning tunneling microscopy (STM) to investigate how a super-den...
Photoemission, from core levels and valence band, and low-energy electron diffraction (LEED) have be...
International audienceUsing X-ray reflectivity, grazing incidence X-ray diffraction, scanning tunnel...
Using high resolution X-ray photoelectron spectroscopy and scanning tunneling microscopy we study th...
Using high resolution X-ray photoelectron spectroscopy and scanning tunneling microscopy we study th...
Thin Co films intercalated between a Graphene capping layer and the Ir(111) surface are of interest ...
Using scanning tunneling microscopy, the oxygen adsorbate superstructures on bare Ir(111) are identi...
International audienceUsing low-energy electron microscopy, we image in real time the intercalation ...
The ease by which graphene is affected through contact with other materials is one of its unique fea...
Thin Co films intercalated between a Graphene capping layer and the Ir(111) surface are of interest ...