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Fabrication of Three-Dimensional Graphene-Based Polyhedrons via Origami-Like Self-Folding
Published on: September 23, 2018
Hydrogen motions in defective graphene: the role of surface defects
Chiara Cavallari1, Daniele Pontiroli2, Mónica Jiménez-Ruiz3
1Institut Laue-Langevin, BP 156, 71 Avenue des Martyrs, 38000 Grenoble, France. rols@ill.fr and Dipartimento di Fisica e Scienze della Terra, Universitá degli studi di Parma, Via G.Usberti 7/a, 43124 Parma, Italy.
Abstract:
Understanding the mobility of H at the surface of carbon nanostructures is one of the essential ingredients for a deep comprehension of the catalytic formation of H2 in interstellar clouds. In this paper, we combine neutron vibrational spectroscopy with DFT molecular dynamics simulations to study the local environment of H structures chemisorbed at the surface of disordered graphene sheets. At 5 K, the ground state is composed of large clusters of hydrogen chemisorbed at sp2 carbon sites, on the edges and in voids of the graphene sheets. At temperatures of ∼300 K, a high degree of dispersion of the clusters is observed, involving the breaking and reforming of covalent bonds which, at low temperatures, is mediated by incoherent tunnelling of hydrogen.
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