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Hg adatoms on graphene: A first-principles study

The interest in understanding the interaction between graphene and atoms that are adsorbed on its surface (adatoms) spans a wide range of research fields and applications, for example, to controllably change the properties of graphene in electronic devices or to detect those changes in graphene-base...

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Detalles Bibliográficos
Autores principales: Fenta, A S, Amorim, C O, Gonçalves, J N, Fortunato, N, Barbosa, M B, Araujo, J P, Houssa, M, Cottenier, S, Van Bael, M J, Correia, J G, Amaral, V S, Pereira, L M C
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1088/2515-7639/abc31c
http://cds.cern.ch/record/2808733
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author Fenta, A S
Amorim, C O
Gonçalves, J N
Fortunato, N
Barbosa, M B
Araujo, J P
Houssa, M
Cottenier, S
Van Bael, M J
Correia, J G
Amaral, V S
Pereira, L M C
author_facet Fenta, A S
Amorim, C O
Gonçalves, J N
Fortunato, N
Barbosa, M B
Araujo, J P
Houssa, M
Cottenier, S
Van Bael, M J
Correia, J G
Amaral, V S
Pereira, L M C
author_sort Fenta, A S
collection CERN
description The interest in understanding the interaction between graphene and atoms that are adsorbed on its surface (adatoms) spans a wide range of research fields and applications, for example, to controllably change the properties of graphene in electronic devices or to detect those changes in graphene-based sensors. We present a density functional theory study of the interaction between graphene and Hg adatoms. Binding energy, electronic structure and electric field gradient (EFG) were calculated for various high-symmetry atomic configurations, from isolated adatoms to a continuous Hg monolayer. Hg as isolated adatom was found to be the most stable configuration, with a binding energy of 188 meV. Whereas isolated adatoms have a minor effect on the electronic structure of graphene (small acceptor effect), Hg monolayer configurations induce a metallic state, with the Fermi level moving well above the Dirac point (donor behavior). Based on the EFG calculated for the various configurations, we discuss how hyperfine techniques (perturbed angular correlation spectroscopy, in particular) can be used to experimentally study Hg adsorption on graphene.
id cern-2808733
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling cern-28087332022-05-06T21:17:38Zdoi:10.1088/2515-7639/abc31chttp://cds.cern.ch/record/2808733engFenta, A SAmorim, C OGonçalves, J NFortunato, NBarbosa, M BAraujo, J PHoussa, MCottenier, SVan Bael, M JCorreia, J GAmaral, V SPereira, L M CHg adatoms on graphene: A first-principles studyDetectors and Experimental TechniquesThe interest in understanding the interaction between graphene and atoms that are adsorbed on its surface (adatoms) spans a wide range of research fields and applications, for example, to controllably change the properties of graphene in electronic devices or to detect those changes in graphene-based sensors. We present a density functional theory study of the interaction between graphene and Hg adatoms. Binding energy, electronic structure and electric field gradient (EFG) were calculated for various high-symmetry atomic configurations, from isolated adatoms to a continuous Hg monolayer. Hg as isolated adatom was found to be the most stable configuration, with a binding energy of 188 meV. Whereas isolated adatoms have a minor effect on the electronic structure of graphene (small acceptor effect), Hg monolayer configurations induce a metallic state, with the Fermi level moving well above the Dirac point (donor behavior). Based on the EFG calculated for the various configurations, we discuss how hyperfine techniques (perturbed angular correlation spectroscopy, in particular) can be used to experimentally study Hg adsorption on graphene.oai:cds.cern.ch:28087332020
spellingShingle Detectors and Experimental Techniques
Fenta, A S
Amorim, C O
Gonçalves, J N
Fortunato, N
Barbosa, M B
Araujo, J P
Houssa, M
Cottenier, S
Van Bael, M J
Correia, J G
Amaral, V S
Pereira, L M C
Hg adatoms on graphene: A first-principles study
title Hg adatoms on graphene: A first-principles study
title_full Hg adatoms on graphene: A first-principles study
title_fullStr Hg adatoms on graphene: A first-principles study
title_full_unstemmed Hg adatoms on graphene: A first-principles study
title_short Hg adatoms on graphene: A first-principles study
title_sort hg adatoms on graphene: a first-principles study
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/2515-7639/abc31c
http://cds.cern.ch/record/2808733
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