Single-molecule junctions are the constitutive components of molecular electronics circuits. For any potential application, the energy gap in the junction, i.e., the accumulated energy difference between the electrode Fermi level and the two frontier energy levels of the molecule, is a key property. Here, using the nonequilibrium Green’s function coupled to the density functional theory framework (NEGF-DFT) method, we show that the gap of the molecule inserted between electrodes can differ largely from the gap of the same molecule, at the isolated level. It can be widely compressed by tuning the alignment mechanism at each metal/molecule interface. In the context of molecular rectification, we show that this mechanism relates to the pinning...
Charge transport phenomena in single-molecule junctions are often dominated by tunneling, with a tra...
A combined experimental and theoretical study is presented revealing the influence of metal molecule...
Understanding and controlling the orbital alignment of molecules placed between electrodes is essent...
Molecular devices are planned as alternative solutions for heat dissipation problems and reliable fa...
A method is presented for predicting one-particle energies for a molecule in a junction with one met...
ABSTRACT: Tuning the transport properties of molecular junctions by chemically modifying the molecul...
Single molecule-based devices represent the ultimate limit in device design, with promising applicat...
Metal/organic interfaces critically determine the characteristics of molecular electronic devices, b...
A central issue in molecular electronics in order to build functional devices is to assess whether c...
Tuning the transport properties of molecular junctions by chemically modifying the molecular structu...
The requirement for controllable frontier orbital energy shift in single-molecule devices based on e...
We modulate the conductance of electrochemically inactive molecules in single-molecule junctions usi...
We study the impact of electrode band structure on transport through single-molecule junctions by me...
International audienceA central issue in molecular electronics in order to build functional devices ...
Here, we use and develop first-principles methods based on density functional theory (DFT) and beyon...
Charge transport phenomena in single-molecule junctions are often dominated by tunneling, with a tra...
A combined experimental and theoretical study is presented revealing the influence of metal molecule...
Understanding and controlling the orbital alignment of molecules placed between electrodes is essent...
Molecular devices are planned as alternative solutions for heat dissipation problems and reliable fa...
A method is presented for predicting one-particle energies for a molecule in a junction with one met...
ABSTRACT: Tuning the transport properties of molecular junctions by chemically modifying the molecul...
Single molecule-based devices represent the ultimate limit in device design, with promising applicat...
Metal/organic interfaces critically determine the characteristics of molecular electronic devices, b...
A central issue in molecular electronics in order to build functional devices is to assess whether c...
Tuning the transport properties of molecular junctions by chemically modifying the molecular structu...
The requirement for controllable frontier orbital energy shift in single-molecule devices based on e...
We modulate the conductance of electrochemically inactive molecules in single-molecule junctions usi...
We study the impact of electrode band structure on transport through single-molecule junctions by me...
International audienceA central issue in molecular electronics in order to build functional devices ...
Here, we use and develop first-principles methods based on density functional theory (DFT) and beyon...
Charge transport phenomena in single-molecule junctions are often dominated by tunneling, with a tra...
A combined experimental and theoretical study is presented revealing the influence of metal molecule...
Understanding and controlling the orbital alignment of molecules placed between electrodes is essent...