We demonstrate the ability to tune the current rectification in metal-molecule-metal junctions through control of the interaction strength of one of the two metal-molecule contacts. Current-voltage characteristics of thiolate bound molecular wires with a nitro or pyridine termination show that the extent of current rectification in a molecular junction correlates well with the extent of coupling between the chemical linker and metal electrode
ABSTRACT: We study the effects of molecular structure on the electronic transport and mechanical sta...
Inorganic semiconductors have long been used to construct rectifying diodes, but making them out of ...
We critically re-examine conductance in benzenedithiol (BDT)/gold junctions using real-time DFT simu...
International audienceThin layers of oligomers with thickness between 7 and 9 nm were deposited on f...
We have assembled two junctions that incorporate redox sites between Hg electrodes by different inte...
The properties of self-assembled molecules may be tuned by sequentially coupling components on a gol...
Junctions consisting of two electrodes and a single molecule acting as a wire can be investigated by...
Current-voltage (I-V) characteristics for metal-molecule-metal junctions formed from three classes o...
ABSTRACT: Molecular rectification is a particularly attrac-tive phenomenon to examine in studying st...
Abstract: The realization of molecular-scale electronic devices will require the development of nove...
We show statistical measurements of single molecule-metal contacts using the mechanically controllab...
A challenge in molecular electronics is to control the strength of the molecule-electrode coupling t...
Two exptl. approaches that enable control of current flow through metal-mols.-metal junctions are de...
We show statistical measurements of single molecule-metal contacts using the mechanically controllab...
Molecular rectification is a particularly attractive phenomenon to examine in studying structure–pro...
ABSTRACT: We study the effects of molecular structure on the electronic transport and mechanical sta...
Inorganic semiconductors have long been used to construct rectifying diodes, but making them out of ...
We critically re-examine conductance in benzenedithiol (BDT)/gold junctions using real-time DFT simu...
International audienceThin layers of oligomers with thickness between 7 and 9 nm were deposited on f...
We have assembled two junctions that incorporate redox sites between Hg electrodes by different inte...
The properties of self-assembled molecules may be tuned by sequentially coupling components on a gol...
Junctions consisting of two electrodes and a single molecule acting as a wire can be investigated by...
Current-voltage (I-V) characteristics for metal-molecule-metal junctions formed from three classes o...
ABSTRACT: Molecular rectification is a particularly attrac-tive phenomenon to examine in studying st...
Abstract: The realization of molecular-scale electronic devices will require the development of nove...
We show statistical measurements of single molecule-metal contacts using the mechanically controllab...
A challenge in molecular electronics is to control the strength of the molecule-electrode coupling t...
Two exptl. approaches that enable control of current flow through metal-mols.-metal junctions are de...
We show statistical measurements of single molecule-metal contacts using the mechanically controllab...
Molecular rectification is a particularly attractive phenomenon to examine in studying structure–pro...
ABSTRACT: We study the effects of molecular structure on the electronic transport and mechanical sta...
Inorganic semiconductors have long been used to construct rectifying diodes, but making them out of ...
We critically re-examine conductance in benzenedithiol (BDT)/gold junctions using real-time DFT simu...