Graphene has a close lattice match to the Ni(111) surface, resulting in a preference for 1 x 1 configurations. We have investigated graphene grown by chemical vapor deposition (CVD) on the nickel carbide (Ni2C) reconstruction of Ni(111) with scanning tunneling microscopy (STM). The presence of excess carbon, In the form of Ni2C, prevents graphene from adopting the preferred 1 x 1 configuration and leads to grain rotation. STM measurements show that residual Ni2C domains are present under rotated graphene. Nickel vacancy islands are observed at the periphery of rotated grains and Indicate Ni2C dissolution after graphene growth. Density functional theory (DFT) calculations predict a very weak (van der Waals type) Interaction of graphene with ...
Surface X-ray Diffraction was used to study the transformation of a carbon-supersaturated carbidic p...
High-temperature-deposited rotated graphene (Gr) on Ni(111) has been investigated by in situ scanni...
openIn this thesis, we start analysing epitaxial graphene on single crystal (111) and (100) Nickel s...
Graphene has a close lattice match to the Ni(111) surface, resulting in a preference for 1 × 1 confi...
4siRecent experiments indicate that the reactivity of metal surfaces changes profoundly when they ar...
Recent experiments indicate that the reactivity of metal surfaces changes profoundly when they are c...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
Surface X-ray Diffraction was used to study the transformation of a carbon-supersaturated carbidic p...
Surface X-ray Diffraction was used to study the transformation of a carbon-supersaturated carbidic p...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
Surface X-ray Diffraction was used to study the transformation of a carbon-supersaturated carbidic p...
High-temperature-deposited rotated graphene (Gr) on Ni(111) has been investigated by in situ scanni...
openIn this thesis, we start analysing epitaxial graphene on single crystal (111) and (100) Nickel s...
Graphene has a close lattice match to the Ni(111) surface, resulting in a preference for 1 × 1 confi...
4siRecent experiments indicate that the reactivity of metal surfaces changes profoundly when they ar...
Recent experiments indicate that the reactivity of metal surfaces changes profoundly when they are c...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
Surface X-ray Diffraction was used to study the transformation of a carbon-supersaturated carbidic p...
Surface X-ray Diffraction was used to study the transformation of a carbon-supersaturated carbidic p...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
Surface X-ray Diffraction was used to study the transformation of a carbon-supersaturated carbidic p...
High-temperature-deposited rotated graphene (Gr) on Ni(111) has been investigated by in situ scanni...
openIn this thesis, we start analysing epitaxial graphene on single crystal (111) and (100) Nickel s...