English

Stable hydrogenated graphene edge types: Normal and reconstructed Klein edges

Mesoscale and Nanoscale Physics 2013-10-01 v4 Materials Science

Abstract

Hydrogenated graphene edges are assumed to be either armchair, zigzag or a combination of the two. We show that the zigzag is not the most stable fully hydrogenated structure along the <2-1-10> direction. Instead hydrogenated Klein and reconstructed Klein based edges are found to be energetically more favourable, with stabilities approaching that of armchair edges. These new structures "unify" graphene edge topology, the most stable flat hydrogenated graphene edges always consisting of pairwise bonded C2H4 edge groups, irrespective the edge orientation. When edge rippling is included, CH3 edge groups are most stable. These new fundamental hydrogen terminated edges have important implications for graphene edge imaging and spectroscopy, as well as mechanisms for graphene growth, nanotube cutting, and nanoribbon formation and behaviour.

Keywords

Cite

@article{arxiv.1306.3384,
  title  = {Stable hydrogenated graphene edge types: Normal and reconstructed Klein edges},
  author = {Philipp Wagner and Viktoria V. Ivanovskaya and Manuel Melle-Franco and Bernard Humbert and Jean-Joseph Adjizian and Patrick R. Briddon and Christopher P. Ewels},
  journal= {arXiv preprint arXiv:1306.3384},
  year   = {2013}
}

Comments

Supplementary Materials pdf available in the source

R2 v1 2026-06-22T00:33:54.441Z