Detecting the spin-polarization of edge states in graphene nanoribbons

Author:

Brede JensORCID,Merino-Díez Nestor,Berdonces-Layunta Alejandro,Sanz Sofía,Domínguez-Celorrio AmeliaORCID,Lobo-Checa JorgeORCID,Vilas-Varela Manuel,Peña DiegoORCID,Frederiksen ThomasORCID,Pascual José I.ORCID,de Oteyza Dimas G.ORCID,Serrate DavidORCID

Abstract

AbstractLow dimensional carbon-based materials can show intrinsic magnetism associated to p-electrons in open-shell π-conjugated systems. Chemical design provides atomically precise control of the π-electron cloud, which makes them promising for nanoscale magnetic devices. However, direct verification of their spatially resolved spin-moment remains elusive. Here, we report the spin-polarization of chiral graphene nanoribbons (one-dimensional strips of graphene with alternating zig-zag and arm-chair boundaries), obtained by means of spin-polarized scanning tunnelling microscopy. We extract the energy-dependent spin-moment distribution of spatially extended edge states with π-orbital character, thus beyond localized magnetic moments at radical or defective carbon sites. Guided by mean-field Hubbard calculations, we demonstrate that electron correlations are responsible for the spin-splitting of the electronic structure. Our versatile platform utilizes a ferromagnetic substrate that stabilizes the organic magnetic moments against thermal and quantum fluctuations, while being fully compatible with on-surface synthesis of the rapidly growing class of nanographenes.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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