The interaction of metals with carbon materials, specifically with graphene, is of importance for various technological applications. In particular, intercalation of alkali metals is believed to provide a means for tuning the electronic properties of graphene for device applications. While the macroscopic effects of such intercalation events can readily be studied, following the related processes at an atomic scale in detail and under well-defined experimental conditions constitutes a challenge. Here, we investigate in situ the adsorption and nucleation of the alkali metals K, Cs, and Li on free-standing graphene by means of low-energy electron point source microscopy. We find that alkali metals readily intercalate in between bilayer graphe...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
Properties of many layered materials, including copper- and iron-based superconductors, topological ...
The interaction of metals with carbon materials (and specifically with graphene) is of importance fo...
The interaction of metals with carbon materials (and specifically with graphene) is of importance fo...
The interaction of metals with carbon materials (and specifically with graphene) is of importance fo...
The interaction of metals with carbon materials (and specifically with graphene) is of importance fo...
Functionalizing graphene, the atomically thin carbon layer, has attracted considerable interest in v...
Functionalizing graphene, the atomically thin carbon layer, has attracted considerable interest in v...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
none9siThe catalytic growth on transition metal surfaces provides a clean and controllable route to ...
The adsorption of alkali metals (AMs) on single layer graphene is studied using first principles met...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
Properties of many layered materials, including copper- and iron-based superconductors, topological ...
The interaction of metals with carbon materials (and specifically with graphene) is of importance fo...
The interaction of metals with carbon materials (and specifically with graphene) is of importance fo...
The interaction of metals with carbon materials (and specifically with graphene) is of importance fo...
The interaction of metals with carbon materials (and specifically with graphene) is of importance fo...
Functionalizing graphene, the atomically thin carbon layer, has attracted considerable interest in v...
Functionalizing graphene, the atomically thin carbon layer, has attracted considerable interest in v...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
none9siThe catalytic growth on transition metal surfaces provides a clean and controllable route to ...
The adsorption of alkali metals (AMs) on single layer graphene is studied using first principles met...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
The catalytic growth on transition metal surfaces provides a clean and controllable route to obtain ...
Properties of many layered materials, including copper- and iron-based superconductors, topological ...