http://www.cnr.it/ontology/cnr/individuo/prodotto/ID198259
Graphene-Induced Substrate Decoupling and Ideal Doping of a Self-Assembled Iron-phthalocyanine Single Layer (Articolo in rivista)
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- Label
- Graphene-Induced Substrate Decoupling and Ideal Doping of a Self-Assembled Iron-phthalocyanine Single Layer (Articolo in rivista) (literal)
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- 2013-01-01T00:00:00+01:00 (literal)
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#doi
- 10.1021/jp308861b (literal)
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Mattia Scardamaglia (1); Simone Lisi (2); Silvano Lizzit (3); Alessandro Baraldi (4,5); Rosanna Larciprete (6); Carlo Mariani (1); Maria Grazia Betti (2) (2013)
Graphene-Induced Substrate Decoupling and Ideal Doping of a Self-Assembled Iron-phthalocyanine Single Layer
in Journal of physical chemistry. C; ACS, American chemical society, Washington, DC (Stati Uniti d'America)
(literal)
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#autori
- Mattia Scardamaglia (1); Simone Lisi (2); Silvano Lizzit (3); Alessandro Baraldi (4,5); Rosanna Larciprete (6); Carlo Mariani (1); Maria Grazia Betti (2) (literal)
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This paper published on the Web on February 5, 2013. The first sentence in paragraph two was corrected. The corrected version was reposted with the Issue on February 14, 2013. (literal)
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- (1) Dipartimento di Fisica, CNISM, CNIS, Università di Roma La Sapienza, Piazzale Aldo Moro 2, I - 00185 Roma, Italy
(2) Dipartimento di Fisica, Università di Roma La Sapienza, Piazzale Aldo Moro 2, I - 00185 Roma, Italy
(3) Sincrotrone Trieste, Str. St. 14 km 163.5, I-34149 Trieste, Italy
(4) Physics Department and Center of Excellence for Nanostructured Materials, University of Trieste, Via Valerio 2, I-34127 Trieste, Italy
(5) IOM-CNR Laboratorio TASC, AREA Science Park, S.S.14 Km 163.5, I-34012 Trieste, Italy
(6) CNR-ISC, Via Fosso del Cavaliere 100, I-00133 Roma, Italy (literal)
- Titolo
- Graphene-Induced Substrate Decoupling and Ideal Doping of a Self-Assembled Iron-phthalocyanine Single Layer (literal)
- Abstract
- Iron-Phthalocyanine molecules self-assemble on the moiré pattern of graphene/Ir(111) as a flat and weakly interacting layer, as determined by core-level photoemission and absorptionspectroscopy. The graphene buffer layer decouples the FePc two-dimensional structure from the underlying metal, the electronic structure of the FePc molecular macrocycles is preserved, and the Fe-L2;3 edges present narrower and slightly modified resonances at the FePc singlelayer coverage with respect to a thin-film. The FePc layer induces a slight electron doping to the Ir-supported graphene resulting in the Dirac cone position expected for an ideal freestanding-like graphene layer with the standard Fermi velocity (literal)
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