The most probable single-molecule conductance of each member of a series of 12 conjugated molecular wires, 6 of which contain either a ruthenium or platinum center centrally placed within the backbone, has been determined. The measurement of a small, positive Seebeck coefficient has established that transmission through these molecules takes place by tunneling through the tail of the HOMO resonance near the middle of the HOMO–LUMO gap in each case. Despite the general similarities in the molecular lengths and frontier-orbital compositions, experimental and computationally determined trends in molecular conductance values across this series cannot be satisfactorily explained in terms of commonly discussed “single-parameter” models of junctio...
The creation of molecular components for use as electronic devices has made enormous progress. In or...
Understanding the electron and phonon transport properties of molecular junctions, which are formed ...
The conductance of a family of ruthenium-quasi cumulene-ruthenium molecular junctions including diff...
The most probable single-molecule conductance of each member of a series of 12 conjugated molecular ...
We report the first concurrent determination of conductance (<i>G</i>) and thermopower (<i>S</i>) of...
The simplicity of single-molecule junctions based on direct bonding of a small molecule between two ...
We present a combined experimental and computational study that probes the thermoelectric and electr...
We present a theoretical analysis of the electronic transport through atomic and molecular junctions...
It is essential for nano- and molecular-scale applications to explore and understand the electron an...
In this work we describe a theoretical model that we have developed for describing electronic transp...
Although research on molecular electronics has drawn increasingly more attention in the last decade,...
A method is presented that allows for the calculation using density functional theory (DFT) of the t...
A method is presented that allows for the calculation using density functional theory (DFT) of the t...
It is now becoming clear that the characteristics of the whole junction are important in determining...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
The creation of molecular components for use as electronic devices has made enormous progress. In or...
Understanding the electron and phonon transport properties of molecular junctions, which are formed ...
The conductance of a family of ruthenium-quasi cumulene-ruthenium molecular junctions including diff...
The most probable single-molecule conductance of each member of a series of 12 conjugated molecular ...
We report the first concurrent determination of conductance (<i>G</i>) and thermopower (<i>S</i>) of...
The simplicity of single-molecule junctions based on direct bonding of a small molecule between two ...
We present a combined experimental and computational study that probes the thermoelectric and electr...
We present a theoretical analysis of the electronic transport through atomic and molecular junctions...
It is essential for nano- and molecular-scale applications to explore and understand the electron an...
In this work we describe a theoretical model that we have developed for describing electronic transp...
Although research on molecular electronics has drawn increasingly more attention in the last decade,...
A method is presented that allows for the calculation using density functional theory (DFT) of the t...
A method is presented that allows for the calculation using density functional theory (DFT) of the t...
It is now becoming clear that the characteristics of the whole junction are important in determining...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
The creation of molecular components for use as electronic devices has made enormous progress. In or...
Understanding the electron and phonon transport properties of molecular junctions, which are formed ...
The conductance of a family of ruthenium-quasi cumulene-ruthenium molecular junctions including diff...