8Direct incorporation of Ni adatoms during graphene growth on Ni(111) is evidenced by scanning tunneling microscopy. The structure and energetics of the observed defects is thoroughly characterized at the atomic level on the basis of density functional theory calculations. Our results show the feasibility of a simple scalable method, which could be potentially used for the realization of macroscopic practical devices, to dope graphene with a transition metal. The method exploits the kinetics of the growth process for the incorporation of Ni adatoms in the graphene network.partially_openpartially_openembargoed_20200608Carnevali, Virginia; Patera, Laerte L; Prandini, Gianluca; Jugovac, Matteo; Modesti, Silvio; Comelli, Giovanni; Peressi, Mari...
Interfaces between graphene and dissimilar materials are needed for making devices, but those interf...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
Interfaces between graphene and dissimilar materials are needed for making devices, but those interf...
Direct incorporation of Ni adatoms during graphene growth on Ni( 111) is evidenced by scanning tunne...
openIn this thesis, we start analysing epitaxial graphene on single crystal (111) and (100) Nickel s...
8siAn operando investigation of graphene growth on (100) grains of polycrystalline nickel (Ni) surfa...
Single adatoms are expected to participate in many processes occurring at solid surfaces, such as th...
Through a combined scanning tunneling microscopy (STM) and density functional theory (DFT) approach,...
Through a combined scanning tunneling microscopy (STM) and density functional theory (DFT) approach,...
Through a combined scanning tunneling microscopy (STM) and density functional theory (DFT) approach,...
Single adatoms are expected to participate in many processes occurring at solid surfaces, such as th...
We report a systematic ab-initio density functional theory investigation of Ni(111) surface alloyed...
The structural evolution of graphene on Ni(111) is investigated as a function of growth temperature ...
Graphene has a close lattice match to the Ni(111) surface, resulting in a preference for 1 × 1 confi...
Graphene has a close lattice match to the Ni(111) surface, resulting in a preference for 1 x 1 confi...
Interfaces between graphene and dissimilar materials are needed for making devices, but those interf...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
Interfaces between graphene and dissimilar materials are needed for making devices, but those interf...
Direct incorporation of Ni adatoms during graphene growth on Ni( 111) is evidenced by scanning tunne...
openIn this thesis, we start analysing epitaxial graphene on single crystal (111) and (100) Nickel s...
8siAn operando investigation of graphene growth on (100) grains of polycrystalline nickel (Ni) surfa...
Single adatoms are expected to participate in many processes occurring at solid surfaces, such as th...
Through a combined scanning tunneling microscopy (STM) and density functional theory (DFT) approach,...
Through a combined scanning tunneling microscopy (STM) and density functional theory (DFT) approach,...
Through a combined scanning tunneling microscopy (STM) and density functional theory (DFT) approach,...
Single adatoms are expected to participate in many processes occurring at solid surfaces, such as th...
We report a systematic ab-initio density functional theory investigation of Ni(111) surface alloyed...
The structural evolution of graphene on Ni(111) is investigated as a function of growth temperature ...
Graphene has a close lattice match to the Ni(111) surface, resulting in a preference for 1 × 1 confi...
Graphene has a close lattice match to the Ni(111) surface, resulting in a preference for 1 x 1 confi...
Interfaces between graphene and dissimilar materials are needed for making devices, but those interf...
The key atomistic mechanisms of graphene formation on Ni for technologically relevant hydrocarbon ex...
Interfaces between graphene and dissimilar materials are needed for making devices, but those interf...