Magnetic clusters as efficient EY-like spin-scattering centres in graphene

The spin scattering induced by magnetic adsorbates on graphene was studied using a combination of transport measurements on a graphene field effect transistor decorated with atomically precise nickel clusters and first principles calculations. A comparative study before and after deposition of Ni 4...

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Veröffentlicht in:Nanoscale 2024-08, Vol.16 (33), p.15713-15721
Hauptverfasser: Keijers, Wout, Murugesan, Ramasamy, Libeert, Guillaume, Raes, Bart, Brems, Steven, De Gendt, Stefan, Houssa, Michel, Janssens, Ewald, Van de Vondel, Joris
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Sprache:eng
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Zusammenfassung:The spin scattering induced by magnetic adsorbates on graphene was studied using a combination of transport measurements on a graphene field effect transistor decorated with atomically precise nickel clusters and first principles calculations. A comparative study before and after deposition of Ni 4 clusters unambiguously corroborated the contribution of the added scatterers. An investigation of the spin scattering parameters as a function of the applied voltage indicated a cluster-induced Elliot-Yafet like spin scattering mechanism. Density functional theory calculations were used in combination with a tight-binding model to quantify the strength of the spin-orbit coupling terms induced by the adsorbed clusters. Exploring the ability of atomically precise magnetic Ni 4 scatterers to augment graphene's spin activity.
ISSN:2040-3364
2040-3372
2040-3372
DOI:10.1039/d4nr01478b