The nucleation of graphene on a transition metal surface, either on a terrace or near a step edge, is systematically explored using density functional theory calculations and applying the two-dimensional (2D) crystal nucleation theory. Careful optimization of the supported carbon clusters, C-N (with size N ranging from 1 to 24), on the Ni(111) surface indicates a ground state structure transformation from a one-dimensional C chain to a 2D sp(2) C network at N approximate to 10-12. Furthermore, the crucial parameters controlling graphene growth on the metal surface, nucleation barrier, nucleus size, and nucleation rate on a terrace or near a step edge are calculated. In agreement with numerous experimental observations, our analysis shows th...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
To understand the origin of the triangular shaped graphene, we systematically investigated the therm...
The mechanism of bilayer graphene nucleation and growth has been investigated by using quantum chemi...
The nucleation of graphene on a transition metal surface, either on a terrace or near a step edge, i...
We present quantum chemical simulations demonstrating graphene precursor formation on bcc (111) tran...
Quantum chemical molecular dynamics simulations of graphene nucleation on the Ni(111) surface show t...
Quantum chemical molecular dynamics simulations of graphene nucleation on the Ni(111) surface show t...
Using ab initio calculations, we systematically investigate graphene nucleation on 10 representative...
To understand the nucleation of carbon atoms to form graphene on transition metal substrates during ...
Our first-principles calculations reveal that there exist contrasting modes of initial nucleations o...
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...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
Graphene is a star material due to its intriguing electronic, mechanical, thermal and chemical prope...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
To understand the origin of the triangular shaped graphene, we systematically investigated the therm...
The mechanism of bilayer graphene nucleation and growth has been investigated by using quantum chemi...
The nucleation of graphene on a transition metal surface, either on a terrace or near a step edge, i...
We present quantum chemical simulations demonstrating graphene precursor formation on bcc (111) tran...
Quantum chemical molecular dynamics simulations of graphene nucleation on the Ni(111) surface show t...
Quantum chemical molecular dynamics simulations of graphene nucleation on the Ni(111) surface show t...
Using ab initio calculations, we systematically investigate graphene nucleation on 10 representative...
To understand the nucleation of carbon atoms to form graphene on transition metal substrates during ...
Our first-principles calculations reveal that there exist contrasting modes of initial nucleations o...
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...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
Graphene is a star material due to its intriguing electronic, mechanical, thermal and chemical prope...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
To understand the origin of the triangular shaped graphene, we systematically investigated the therm...
The mechanism of bilayer graphene nucleation and growth has been investigated by using quantum chemi...