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dc.creatorAlexandre, Simone Silva-
dc.creatorLúcio, Aline Duarte-
dc.creatorCastro Neto, A. H.-
dc.creatorNunes, Ricardo Wagner-
dc.date.accessioned2017-01-20T19:49:29Z-
dc.date.available2017-01-20T19:49:29Z-
dc.date.issued2012-09-05-
dc.identifier.citationALEXANDRE, S. S. et al. Correlated magnetic states in extended one-dimensional defects in graphene. Nano Letters, Washington, v. 12, n. 10, p. 5097–5102, 2012.pt_BR
dc.identifier.urihttp://pubs.acs.org/doi/abs/10.1021/nl3017434pt_BR
dc.identifier.urihttp://repositorio.ufla.br/jspui/handle/1/12175-
dc.description.abstractAb initio calculations indicate that while the electronic states introduced by tilt grain boundaries in graphene are only partially confined to the defect core, a translational grain boundary introduces states near the Fermi level that are very strongly confined to the core of the defect, and display a ferromagnetic instability. The translational boundary lies along a graphene zigzag direction and its magnetic state is akin to that which has been theoretically predicted to occur on zigzag edges of graphene ribbons. Unlike ribbon edges, the translational grain boundary is fully immersed within the bulk of graphene, hence its magnetic state is protected from the contamination and reconstruction effects that have hampered experimental detection of the magnetic ribbon states. Moreover, our calculations suggest that charge transfer between grain boundaries and the bulk in graphene is short ranged, with charge redistribution confined to ∼5 Å from the geometric center of the 1D defects.pt_BR
dc.languageen_USpt_BR
dc.publisherAmerican Chemical Societypt_BR
dc.rightsrestrictAccesspt_BR
dc.sourceNano Letterspt_BR
dc.subjectElectronicspt_BR
dc.subjectAtomic structure – Statept_BR
dc.subjectMagnetic instabilitypt_BR
dc.subjectEletrônicapt_BR
dc.subjectEstrutura atômica – Estágiopt_BR
dc.subjectInstabilidade magnéticapt_BR
dc.titleCorrelated magnetic states in extended one-dimensional defects in graphenept_BR
dc.typeArtigopt_BR
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