We have used scanning tunneling microscopy to create and study single molecule junctions with thioether-terminated oligothiophene molecules. We find that the conductance of these junctions increases upon formation of charge transfer complexes of the molecules with tetracyanoethene, and that the extent of the conductance increase is greater the longer is the oligothiophene, i.e. the lower is the conductance of the uncomplexed molecule in the junction. We use non-equilibrium Green's function transport calculations to explore the reasons for this theoretically, and find that new resonances appear in the transmission function, pinned close to the Fermi energy of the contacts, as a consequence of the charge transfer interaction. This is an examp...
Molecular tunneling junctions should enable the tailoring of charge-transport at the quantum level t...
Charge transport phenomena in single-molecule junctions are often dominated by tunneling, with a tra...
Stacking interactions are of significant importance in the fields of chemistry, biology, and materia...
Interference features in the transmission spectra can dominate charge transport in metal-molecule-me...
The solid-state structures of organic charge transfer (CT) salts are critical in determining their m...
We used a range of scanning tunnelling microscopy (STM)-based methods to conduct a detailed study of...
Controlling the electrical conductance and in particular the occurrence of quantum interference in s...
Electronic factors in molecules such as quantum interference and cross-conjugation can lead to drama...
Electron transfer processes are investigated through conductance measurements of single molecules. M...
This paper reports highly efficient coherent tunneling in single-molecule wires of oligo-ferrocenes ...
Revealing the mechanisms of electronic transport through metal-molecule interfaces is of central imp...
Recent experiments demonstrate a temperature control of the electric conduction through a ferrocene-...
A combined experimental and theoretical study is presented revealing the influence of metal molecule...
Controlling charge transport through molecular wires by utilizing quantum interference (QI) is a gro...
Molecular tunneling junctions should enable the tailoring of charge-transport at the quantum level t...
Molecular tunneling junctions should enable the tailoring of charge-transport at the quantum level t...
Charge transport phenomena in single-molecule junctions are often dominated by tunneling, with a tra...
Stacking interactions are of significant importance in the fields of chemistry, biology, and materia...
Interference features in the transmission spectra can dominate charge transport in metal-molecule-me...
The solid-state structures of organic charge transfer (CT) salts are critical in determining their m...
We used a range of scanning tunnelling microscopy (STM)-based methods to conduct a detailed study of...
Controlling the electrical conductance and in particular the occurrence of quantum interference in s...
Electronic factors in molecules such as quantum interference and cross-conjugation can lead to drama...
Electron transfer processes are investigated through conductance measurements of single molecules. M...
This paper reports highly efficient coherent tunneling in single-molecule wires of oligo-ferrocenes ...
Revealing the mechanisms of electronic transport through metal-molecule interfaces is of central imp...
Recent experiments demonstrate a temperature control of the electric conduction through a ferrocene-...
A combined experimental and theoretical study is presented revealing the influence of metal molecule...
Controlling charge transport through molecular wires by utilizing quantum interference (QI) is a gro...
Molecular tunneling junctions should enable the tailoring of charge-transport at the quantum level t...
Molecular tunneling junctions should enable the tailoring of charge-transport at the quantum level t...
Charge transport phenomena in single-molecule junctions are often dominated by tunneling, with a tra...
Stacking interactions are of significant importance in the fields of chemistry, biology, and materia...