Sub-molecular spectroscopy and temporary molecular charging of Ni-phthalocyanine on graphene with STM

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TitreSub-molecular spectroscopy and temporary molecular charging of Ni-phthalocyanine on graphene with STM
Type de publicationJournal Article
Year of Publication2018
AuteursZhao M, Almarzouqi F, Duverger E, Sonnet P, Dujardin G, Mayne AJ
JournalPHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume20
Pagination19507-19514
Date PublishedAUG 7
Type of ArticleArticle
ISSN1463-9076
Résumé

In this study, the self-assembled molecular network and electronic properties of Ni-phthalocyanine (NiPc) molecules on monolayer graphene (MLG)/6H-SiC(0001) were studied by room temperature Scanning Tunnelling Microscopy (STM) and Density Functional Theory (DFT) calculations. In this study, a very weak electronic coupling between the graphene and the NiPc molecules is found. This is due to the very small charge transfer of only 0.035e per molecule. The weak molecule-graphene interaction has two observable consequences: sub-molecular resolution was obtained in the STM spectroscopy at room-temperature with the molecules adsorbed directly on the graphene, and the occupied and unoccupied molecular resonance peaks were observed to shift their position in energy as a function of the tip-surface distance. This is due to the temporary local charging (either positive or negative) that is achieved by decreasing the surface voltage under the STM tip. This may have important consequences for future studies of the opto-electronic properties of such hybrid graphene-molecule systems.

DOI10.1039/c8cp02113a