Achieving High Substitutional Incorporation in Mn-Doped Graphene.

doping graphene ion implantation magnetism manganese

Journal

ACS nano
ISSN: 1936-086X
Titre abrégé: ACS Nano
Pays: United States
ID NLM: 101313589

Informations de publication

Date de publication:
28 Jun 2024
Historique:
medline: 28 6 2024
pubmed: 28 6 2024
entrez: 28 6 2024
Statut: aheadofprint

Résumé

Despite its broad potential applications, substitution of carbon by transition metal atoms in graphene has so far been explored only to a limited extent. We report the realization of substitutional Mn doping of graphene to a record high atomic concentration of 0.5%, which was achieved using ultralow-energy ion implantation. By correlating the experimental data with the results of ab initio Born-Oppenheimer molecular dynamics calculations, we infer that direct substitution is the dominant mechanism of impurity incorporation. Thermal annealing in ultrahigh vacuum provides efficient removal of surface contaminants and additional implantation-induced disorder, resulting in Mn-doped graphene that, aside from the substitutional Mn impurities, is essentially as clean and defect-free as the as-grown layer. We further show that the Dirac character of graphene is preserved upon substitutional Mn doping, even in this high concentration regime, making this system ideal for studying the interaction between Dirac conduction electrons and localized magnetic moments. More generally, these results show that ultralow energy ion implantation can be used for controlled functionalization of graphene with substitutional transition-metal atoms, of relevance for a wide range of applications, from magnetism and spintronics to single-atom catalysis.

Identifiants

pubmed: 38938181
doi: 10.1021/acsnano.4c03475
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Auteurs

Renan Villarreal (R)

Quantum Solid State Physics, KU Leuven, Leuven 3001, Belgium.

Zviadi Zarkua (Z)

Quantum Solid State Physics, KU Leuven, Leuven 3001, Belgium.

Silvan Kretschmer (S)

Institute of Ion Beam Physics and Materials Research, Helmholtz-Zentrum Dresden-Rossendorf, Dresden 01328, Germany.

Vince Hendriks (V)

Quantum Solid State Physics, KU Leuven, Leuven 3001, Belgium.

Jonas Hillen (J)

Quantum Solid State Physics, KU Leuven, Leuven 3001, Belgium.

Hung Chieh Tsai (HC)

Imec Vzw (Interuniversitair Micro-Electronica Centrum), Leuven 3001, Belgium.
Department of Chemistry, Division of Molecular Design and Synthesis, KU Leuven, Leuven 3001, Belgium.

Felix Junge (F)

II. Institute of Physics, University of Göttingen, Göttingen 37077, Germany.

Matz Nissen (M)

Institut fur̈ Experimentalphysik, Universität Hamburg, Hamburg 22761, Germany.

Tanusree Saha (T)

Laboratory of Quantum Optics, University of Nova Gorica, Vipavska 11c, Ajdovščina SI-5270, Slovenia.

Simona Achilli (S)

ETSF and Dipartimento di Fisica "Aldo Pontremoli", Università Degli Studi di Milano, Via Celoria, 16, Milano I-20133, Italy.

Hans C Hofsäss (HC)

II. Institute of Physics, University of Göttingen, Göttingen 37077, Germany.

Michael Martins (M)

Institut fur̈ Experimentalphysik, Universität Hamburg, Hamburg 22761, Germany.

Giovanni De Ninno (G)

Laboratory of Quantum Optics, University of Nova Gorica, Vipavska 11c, Ajdovščina SI-5270, Slovenia.

Paolo Lacovig (P)

Elettra Sincrotrone Trieste, Strada Statale 14 km 163.5, Trieste 34149, Italy.

Silvano Lizzit (S)

Elettra Sincrotrone Trieste, Strada Statale 14 km 163.5, Trieste 34149, Italy.

Giovanni Di Santo (G)

Elettra Sincrotrone Trieste, Strada Statale 14 km 163.5, Trieste 34149, Italy.

Luca Petaccia (L)

Elettra Sincrotrone Trieste, Strada Statale 14 km 163.5, Trieste 34149, Italy.

Steven De Feyter (S)

Department of Chemistry, Division of Molecular Imaging and Photonics, KU Leuven, Leuven 3001, Belgium.

Stefan De Gendt (S)

Imec Vzw (Interuniversitair Micro-Electronica Centrum), Leuven 3001, Belgium.
Department of Chemistry, Division of Molecular Design and Synthesis, KU Leuven, Leuven 3001, Belgium.

Steven Brems (S)

Imec Vzw (Interuniversitair Micro-Electronica Centrum), Leuven 3001, Belgium.

Joris Van de Vondel (J)

Quantum Solid State Physics, KU Leuven, Leuven 3001, Belgium.

Arkady V Krasheninnikov (AV)

Institute of Ion Beam Physics and Materials Research, Helmholtz-Zentrum Dresden-Rossendorf, Dresden 01328, Germany.

Lino M C Pereira (LMC)

Quantum Solid State Physics, KU Leuven, Leuven 3001, Belgium.

Classifications MeSH