作者: M. M. Ugeda , D. Fernández-Torre , I. Brihuega , P. Pou , A. J. Martínez-Galera
DOI: 10.1103/PHYSREVLETT.107.116803
关键词: Vacancy defect 、 Graphene nanoribbons 、 Bilayer graphene 、 Fermi energy 、 Quenching 、 Density functional theory 、 Condensed matter physics 、 Graphene 、 Scanning tunneling microscope 、 Materials science
摘要: … show that the electronic properties of C vacancies in a graphene layer on top of a metal strongly differ from the ones found for C vacancies in a welldecoupled graphene layer as it is the …