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

Graphene-Induced Substrate Decoupling and Ideal Doping of a Self-Assembled Iron-phthalocyanine Single Layer

Alessandro Baraldi;Rosanna Larciprete;
2013

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
2013
Istituto dei Sistemi Complessi - ISC
Istituto Officina dei Materiali - IOM -
FePc
Graphene
Doping
Self-assembly
Photoemission
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Descrizione: Graphene-Induced Substrate Decoupling and Ideal Doping of a Self-Assembled Iron-phthalocyanine Single Layer
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/20623
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