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Emergence of photoswitchable states in a graphene-azobenzene-Au platform

Authors :
Anna Cattani-Scholz
E. Margapoti
Johannes V. Barth
Mahmoud M. Asmar
O. Ceylan
Jose A. Garrido
Sergio E. Ulloa
Juan Li
Philipp Strobel
Jonathan J. Finley
Max Seifert
Carlos-Andres Palma
Matthias Sachsenhauser
Source :
Nano letters. 14(12)
Publication Year :
2014

Abstract

The perfect transmission of charge carriers through potential barriers in graphene (Klein tunneling) is a direct consequence of the Dirac equation that governs the low-energy carrier dynamics. As a result, localized states do not exist in unpatterned graphene, but quasi-bound states \emph{can} occur for potentials with closed integrable dynamics. Here, we report the observation of resonance states in photo-switchable self-assembled molecular(SAM)-graphene hybrid. Conductive AFM measurements performed at room temperature reveal strong current resonances, the strength of which can be reversibly gated \textit{on-} and \textit{off-} by optically switching the molecular conformation of the mSAM. Comparisons of the voltage separation between current resonances ($\sim 70$--$120$ mV) with solutions of the Dirac equation indicate that the radius of the gating potential is $\sim 7 \pm 2$ nm with a strength $\geq 0.5$ eV. Our results and methods might provide a route toward \emph{optically programmable} carrier dynamics and transport in graphene nano-materials.

Details

ISSN :
15306992
Volume :
14
Issue :
12
Database :
OpenAIRE
Journal :
Nano letters
Accession number :
edsair.doi.dedup.....a6d6a452bb2a908fd4a17fe40a145e7b