International audienceA central issue in molecular electronics in order to build functional devices is to assess whether changes in the electronic structure of isolated compounds by chemical derivatization are retained once the molecules are inserted into molecular junctions. Recent theoretical studies have suggested that this is not always the case due to the occurrence of pinning effects making the alignment of the transporting levels insensitive to the changes in the electronic structure of the isolated systems. We explore here this phenomenon by investigating at both the experimental and theoretical levels the I/V characteristics of molecular junctions incorporating three different three-ring phenylene ethynylene derivatives designed to...
We study the impact of electrode band structure on transport through single-molecule junctions by me...
This paper describes a simple model for comparing the degree of electronic coupling between molecule...
The charge transport characteristics of 11 tailor-made dithiol-terminated oligo(phenylene-ethynylene...
International audienceA central issue in molecular electronics in order to build functional devices ...
A central issue in molecular electronics in order to build functional devices is to assess whether c...
Understanding electron transport in metal−molecule−metal (MMM) junctions is of g...
International audienceThin layers of oligomers with thickness between 7 and 9 nm were deposited on f...
The simplest component of molecular electronics consists of a single-molecule transport junction: a ...
Single-molecule junctions are the constitutive components of molecular electronics circuits. For any...
It is well known that the electrical conductance of molecular junctions in the tunneling regime vari...
We report detailed measurements of transport and electronic properties of molecular tunnel junctions...
We present a combined experimental and computational study that probes the thermoelectric and electr...
Controlling charge transport through molecular wires by utilizing quantum interference (QI) is a gro...
The transition voltage of three different asymmetric Au/poly(phenylene) thiol/Au molecular junctions...
We study the impact of electrode band structure on transport through single-molecule junctions by me...
We study the impact of electrode band structure on transport through single-molecule junctions by me...
This paper describes a simple model for comparing the degree of electronic coupling between molecule...
The charge transport characteristics of 11 tailor-made dithiol-terminated oligo(phenylene-ethynylene...
International audienceA central issue in molecular electronics in order to build functional devices ...
A central issue in molecular electronics in order to build functional devices is to assess whether c...
Understanding electron transport in metal−molecule−metal (MMM) junctions is of g...
International audienceThin layers of oligomers with thickness between 7 and 9 nm were deposited on f...
The simplest component of molecular electronics consists of a single-molecule transport junction: a ...
Single-molecule junctions are the constitutive components of molecular electronics circuits. For any...
It is well known that the electrical conductance of molecular junctions in the tunneling regime vari...
We report detailed measurements of transport and electronic properties of molecular tunnel junctions...
We present a combined experimental and computational study that probes the thermoelectric and electr...
Controlling charge transport through molecular wires by utilizing quantum interference (QI) is a gro...
The transition voltage of three different asymmetric Au/poly(phenylene) thiol/Au molecular junctions...
We study the impact of electrode band structure on transport through single-molecule junctions by me...
We study the impact of electrode band structure on transport through single-molecule junctions by me...
This paper describes a simple model for comparing the degree of electronic coupling between molecule...
The charge transport characteristics of 11 tailor-made dithiol-terminated oligo(phenylene-ethynylene...