Ontology highlight
ABSTRACT:
SUBMITTER: Choi JH
PROVIDER: S-EPMC3668318 | biostudies-other | 2013
REPOSITORIES: biostudies-other
Scientific reports 20130101
London dispersion force is ubiquitous in nature, and is increasingly recognized to be an important factor in a variety of surface processes. Here we demonstrate unambiguously the decisive role of London dispersion force in non-equilibrium growth of ordered nanostructures on metal substrates using aromatic source molecules. Our first-principles based multi-scale modeling shows that a drastic reduction in the growth temperature, from ~1000°C to ~300°C, can be achieved in graphene growth on Cu(111) ...[more]