Graphene nucleation on transition metal surface: structure transformation and role of the metal step edge
- PMID: 21384854
- DOI: 10.1021/ja110927p
Graphene nucleation on transition metal surface: structure transformation and role of the metal step edge
Erratum in
- J Am Chem Soc. 2012 Jun 6;134(22):9534
Abstract
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 ≈ 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 that graphene nucleation near a metal step edge is superior to that on a terrace. On the basis of our analysis, we propose the use of graphene seeds to synthesize high-quality graphene in large area.
© 2011 American Chemical Society
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