Article ID Journal Published Year Pages File Type
5357459 Applied Surface Science 2015 6 Pages PDF
Abstract
We calculated the geometrical and electronic structures of graphene with different vacancy densities and configurations. Vacancy was varied in graphene from mono- to tri-vacancy and configured to zigzag and armchair lattice directions. While di-vacancy in graphene led to a gap in the electronic structure, mono- and tri-vacancies shifted the Fermi level below the valence band maximum irrespective of vacancy configurations. Under the same density of vacancies, di-vacancy to zigzag direction had lower formation energy than defects along armchair direction. Meanwhile, tri-vacancy to zigzag lattice direction led to higher formation energy than defects to armchair direction.
Related Topics
Physical Sciences and Engineering Chemistry Physical and Theoretical Chemistry
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