Publication | Closed Access
Redox-Dependent Franck–Condon Blockade and Avalanche Transport in a Graphene–Fullerene Single-Molecule Transistor
109
Citations
33
References
2015
Year
Graphene–fullerene Single-molecule TransistorFunctionalized C60Graphene Quantum DotEngineeringPhysicsNanomaterialsNanotechnologyNanoelectronicsApplied PhysicsGrapheneAvalanche TunnellingGraphene NanoribbonTransport MeasurementsAvalanche TransportRedox-dependent Franck–condon Blockade
We report transport measurements on a graphene-fullerene single-molecule transistor. The device architecture where a functionalized C60 binds to graphene nanoelectrodes results in strong electron-vibron coupling and weak vibron relaxation. Using a combined approach of transport spectroscopy, Raman spectroscopy, and DFT calculations, we demonstrate center-of-mass oscillations, redox-dependent Franck-Condon blockade, and a transport regime characterized by avalanche tunnelling in a single-molecule transistor.
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