The electron-acceptor molecule TCNQ is found in either of two distinct integer charge states when embedded into a monolayer of a charge transfer complex on a gold surface. Scanning tunneling spectroscopy measurements identify these states through the presence or absence of a zero-bias Kondo resonance. Increasing the (tip-induced) electric field allows us to reversibly induce the oxidation or reduction of TCNQ species from their anionic or neutral ground state, respectively. We show that the different ground states arise from slight variations in the underlying surface potential, pictured here as the gate of a three-terminal device
The archetypal electron acceptor molecule, TCNQ, is generally believed to become bent into an invert...
International audienceChemical coupling of functional molecules on top of the so-called platform mol...
We report on the scanning tunneling microscopy/spectroscopy (STM/STS) study of cobalt phthalocyanine...
The electron-acceptor molecule TCNQ is found in either of two distinct integer charge states when em...
We report an atypical charge distribution in a highly ordered monolayer of sodium (Na) and tetracyan...
The ability to modify the electronic properties of monolayer graphene via charge-donating or charge-...
Scanning tunnelling microscopy (STM), low energy electron diffraction (LEED), ultraviolet and soft X...
The ability to understand and control the electronic properties of individual molecules in a device ...
Electron transport characteristics were studied in redox molecule-modified tunneling junctions Au(11...
The ability to understand and control the electronic properties of individual molecules in a device ...
Transistors, regardless of their size, rely on electrical gates to control the conductance between s...
In this thesis, molecules on metal surfaces are explored using low-temperature scanning tunneling mi...
The electric field is an important parameter to vary in a single-molecule experiment, because it can...
Chemical coupling of functional molecules on top of the so-called platform molecules allows the form...
In this thesis, structural and electronic effects accompanying electron transfer reactions in indivi...
The archetypal electron acceptor molecule, TCNQ, is generally believed to become bent into an invert...
International audienceChemical coupling of functional molecules on top of the so-called platform mol...
We report on the scanning tunneling microscopy/spectroscopy (STM/STS) study of cobalt phthalocyanine...
The electron-acceptor molecule TCNQ is found in either of two distinct integer charge states when em...
We report an atypical charge distribution in a highly ordered monolayer of sodium (Na) and tetracyan...
The ability to modify the electronic properties of monolayer graphene via charge-donating or charge-...
Scanning tunnelling microscopy (STM), low energy electron diffraction (LEED), ultraviolet and soft X...
The ability to understand and control the electronic properties of individual molecules in a device ...
Electron transport characteristics were studied in redox molecule-modified tunneling junctions Au(11...
The ability to understand and control the electronic properties of individual molecules in a device ...
Transistors, regardless of their size, rely on electrical gates to control the conductance between s...
In this thesis, molecules on metal surfaces are explored using low-temperature scanning tunneling mi...
The electric field is an important parameter to vary in a single-molecule experiment, because it can...
Chemical coupling of functional molecules on top of the so-called platform molecules allows the form...
In this thesis, structural and electronic effects accompanying electron transfer reactions in indivi...
The archetypal electron acceptor molecule, TCNQ, is generally believed to become bent into an invert...
International audienceChemical coupling of functional molecules on top of the so-called platform mol...
We report on the scanning tunneling microscopy/spectroscopy (STM/STS) study of cobalt phthalocyanine...