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Fluorine-induced local magnetic moment in graphene: A hybrid DFT studyopen access

Authors
Kim, Hyun-JungCho, Jun-Hyung
Issue Date
May-2013
Publisher
AMER PHYSICAL SOC
Citation
PHYSICAL REVIEW B, v.87, no.17, pp.1 - 5
Indexed
SCIE
SCOPUS
Journal Title
PHYSICAL REVIEW B
Volume
87
Number
17
Start Page
1
End Page
5
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/143738
DOI
10.1103/PhysRevB.87.174435
ISSN
2469-9950
Abstract
Recent experimental evidence that fluorinated graphene creates local magnetic moments around F adatoms has not been supported by semilocal density-functional theory (DFT) calculations where the adsorption of an F adatom induces no magnetic moment in graphene. Here, we show that such an incorrect prediction of the nonmagnetic ground state is due to the self-interaction error inherent in semilocal exchange-correlation functionals. The present hybrid DFT calculation for an F adatom on graphene predicts not only a spin-polarized ground state with a spin moment of similar to 1 mu(B), but also a long-range spin polarization caused by the bipartite nature of the graphene lattice as well as the induced spin polarization of the graphene states. The results provide support for the experimental observations of local magnetic moments in fluorinated graphene.
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