International audienceUsing low-energy electron microscopy, we image in real time the intercalation of a cobalt monolayer between graphene and the (111) surface of iridium. Our measurements reveal that the edges of a graphene flake represent an energy barrier to intercalation. Based on a simple description of the growth kinetics, we estimate this energy barrier and find small, but substantial, local variations. These local variations suggest a possible influence of the graphene orientation with respect to its substrate and of the graphene edge termination on the energy value of the barrier height. Besides, our measurements show that intercalated cobalt is energetically more favorable than cobalt on bare iridium, indicating a surfactant role...
International audienceWe report on the intercalation of a submonolayer of copper at 775K underneath ...
The ease by which graphene is affected through contact with other materials is one of its unique fea...
Using X-ray photoemission spectroscopy (XPS) and scanning tunneling microscopy (STM) we resolve the ...
3 figuresInternational audienceUsing low-energy electron microscopy, we study Co intercalation under...
Graphene can be used to avoid the oxidation of metallic films. This work explores the effectiveness ...
Here we show that it is possible to intercalate CO under graphene grown on Ir(111) already at room t...
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...
Graphene have attracted attention recently due to its unique properties and opportunities for develo...
The intercalation of atoms or small molecules underneath graphene epitaxially grown on single metal ...
The intercalation of atoms or small molecules underneath graphene epitaxially grown on single metal ...
The intercalation of atoms or small molecules underneath graphene epitaxially grown on single metal ...
The intercalation of atoms or small molecules underneath graphene epitaxially grown on single metal ...
Using X-ray photoemission spectroscopy (XPS) and scanning tunneling microscopy (STM) we resolve the ...
The intercalation of atoms or small molecules underneath graphene epitaxially grown on single metal ...
International audienceWe report on the intercalation of a submonolayer of copper at 775K underneath ...
The ease by which graphene is affected through contact with other materials is one of its unique fea...
Using X-ray photoemission spectroscopy (XPS) and scanning tunneling microscopy (STM) we resolve the ...
3 figuresInternational audienceUsing low-energy electron microscopy, we study Co intercalation under...
Graphene can be used to avoid the oxidation of metallic films. This work explores the effectiveness ...
Here we show that it is possible to intercalate CO under graphene grown on Ir(111) already at room t...
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...
Graphene have attracted attention recently due to its unique properties and opportunities for develo...
The intercalation of atoms or small molecules underneath graphene epitaxially grown on single metal ...
The intercalation of atoms or small molecules underneath graphene epitaxially grown on single metal ...
The intercalation of atoms or small molecules underneath graphene epitaxially grown on single metal ...
The intercalation of atoms or small molecules underneath graphene epitaxially grown on single metal ...
Using X-ray photoemission spectroscopy (XPS) and scanning tunneling microscopy (STM) we resolve the ...
The intercalation of atoms or small molecules underneath graphene epitaxially grown on single metal ...
International audienceWe report on the intercalation of a submonolayer of copper at 775K underneath ...
The ease by which graphene is affected through contact with other materials is one of its unique fea...
Using X-ray photoemission spectroscopy (XPS) and scanning tunneling microscopy (STM) we resolve the ...