Embedding Transition-Metal Atoms in Graphene: Structure, Bonding, and Magnetism
Helsinki Institute of Physics · Fimlab (Finland) · +2 more institutions
Abstract
We present a density-functional-theory study of transition-metal atoms (Sc-Zn, Pt, and Au) embedded in single and double vacancies (SV and DV) in a graphene sheet. We show that for most metals, the bonding is strong and the metal-vacancy complexes exhibit interesting magnetic behavior. In particular, an Fe atom on a SV is not magnetic, while the Fe@DV complex has a high magnetic moment. Surprisingly, Au and Cu atoms at SV are magnetic. Both bond strengths and magnetic moments can be understood within a simple local-orbital picture, involving carbon sp(2) hybrids and the metal spd orbitals. We further calculate the barriers for impurity-atom migration, and they agree well with available experimental data. We…
Citation impact
- FWCI
- 28.15
- Percentile
- 100%
- References
- 28
Authors
5- AVArkady V. KrasheninnikovCorresponding
Helsinki Institute of Physics, Fimlab (Finland), University of Helsinki
- PLPekka Lehtinen
Helsinki Institute of Physics
- ASAdam S. Foster
Helsinki Institute of Physics, Tampere University
- PPPekka Pyykkö
University of Helsinki
- RMR. M. Nieminen
Helsinki Institute of Physics
Topics & keywords
- Magnetism
- Magnetic moment
- Spintronics
- Atomic orbital
- Graphene
- Materials science
- Transition metal
- Atom (system on chip)