Abstract
We report ab initio calculations of the structural, electronic,
and magnetic properties of a graphene monolayer substitutionally doped with Co (Cosub) atoms. These calculations are done within
density-functional theory using the generalized gradient approximation. We
focus in Co because among traditional ferromagnetic elements (Fe, Co, and Ni),
only Cosub atoms induce spin polarization in graphene.
Our results show the complex magnetism of Co substitutional impurities in
graphene, which is mapped into simple models such as the π-vacancy and Heisenberg model. The links
established in our work can be used to bring into contact the engineering of
nanostructures with the results of π models in defective graphene. In principle,
the structures considered here can be fabricated using electron irradiation to
create defects and depositing Co at the same time
| Original language | English |
|---|---|
| Article number | 125433 |
| Journal | Physical Review B |
| Volume | 81 |
| DOIs | |
| Publication status | Published - 26 Mar 2010 |
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