We present quantum chemical simulations demonstrating graphene precursor formation on bcc (111) transition metal surfaces during the chemical vapor deposition process. We observe that the experimentally reported positive curvature of graphene precursors is a consequence of the natural tendency toward pentagon formation during the precursor self-assembly process. Density functional theory calculations reveal that the stability of these precursors is driven by the dominance of metal–carbon σ bonding over metal–carbon π bonding at the precursor edge. These simulations show that Fe(111) catalysts facilitate precursor formation at lower carbon densities and increase precursor stabilities. However, the stronger catalyst–carbon interaction strengt...
The mechanism of bilayer graphene nucleation and growth has been investigated by using quantum chemi...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
To explore the mechanism of graphene chemical vapor deposition (CVD) growth on a catalyst surface, a...
We present quantum chemical simulations demonstrating graphene precursor formation on bcc (111) tran...
We present quantum chemical simulations demonstrating graphene precursor formation on bcc (111) tran...
We present quantum chemical simulations demonstrating graphene precursor formation on bcc (111) tran...
Using ab initio calculations, we systematically investigate graphene nucleation on 10 representative...
Chemical vapor deposition (CVD) growth of graphene on Cu(111) has been modeled with quantum chemical...
To understand the nucleation of carbon atoms to form graphene on transition metal substrates during ...
Quantum chemical molecular dynamics simulations of graphene nucleation on the Ni(111) surface show t...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
The nucleation of graphene on a transition metal surface, either on a terrace or near a step edge, i...
Quantum chemical molecular dynamics simulations of graphene nucleation on the Ni(111) surface show t...
We discuss the synthesis of carbon nanotubes (CNTs) and graphene by catalytic chemical vapour deposi...
The nucleation of graphene on a transition metal surface, either on a terrace or near a step edge, i...
The mechanism of bilayer graphene nucleation and growth has been investigated by using quantum chemi...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
To explore the mechanism of graphene chemical vapor deposition (CVD) growth on a catalyst surface, a...
We present quantum chemical simulations demonstrating graphene precursor formation on bcc (111) tran...
We present quantum chemical simulations demonstrating graphene precursor formation on bcc (111) tran...
We present quantum chemical simulations demonstrating graphene precursor formation on bcc (111) tran...
Using ab initio calculations, we systematically investigate graphene nucleation on 10 representative...
Chemical vapor deposition (CVD) growth of graphene on Cu(111) has been modeled with quantum chemical...
To understand the nucleation of carbon atoms to form graphene on transition metal substrates during ...
Quantum chemical molecular dynamics simulations of graphene nucleation on the Ni(111) surface show t...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
The nucleation of graphene on a transition metal surface, either on a terrace or near a step edge, i...
Quantum chemical molecular dynamics simulations of graphene nucleation on the Ni(111) surface show t...
We discuss the synthesis of carbon nanotubes (CNTs) and graphene by catalytic chemical vapour deposi...
The nucleation of graphene on a transition metal surface, either on a terrace or near a step edge, i...
The mechanism of bilayer graphene nucleation and growth has been investigated by using quantum chemi...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
To explore the mechanism of graphene chemical vapor deposition (CVD) growth on a catalyst surface, a...