Seebeck coefficient measurements provide unique insights into the electronic structure of single-molecule junctions, which underpins their charge and heat transport properties. Since the Seebeck coefficient depends on the slope of the transmission function at the Fermi energy (EF), the sign of the thermoelectric voltage will be determined by the location of the molecular orbital levels relative to EF. Here we investigate thermoelectricity in molecular junctions formed from a series of oligophenylene-ethynylene (OPE) derivatives with biphenylene, naphthalene and anthracene cores and pyridyl or methylthio end-groups. Single-molecule conductance and thermoelectric voltage data were obtained using a home-built scanning tunneling microscope brea...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
This article highlights a novel strategy for designing molecules with high thermoelectric performanc...
This article highlights a novel strategy for designing molecules with high thermoelectric performanc...
Seebeck coefficient measurements provide unique insights into the electronic structure of single-mol...
Seebeck coefficient measurements provide unique insights into the electronic structure of single-mol...
We report the synthesis and the single-molecule transport properties of three new oligo(phenyleneeth...
Seebeck coefficient measurements provide unique insights into the electronic structure of single-mol...
We report the synthesis and the single-molecule transport properties of three new oligo(phenyleneeth...
When a linear aromatic molecule within a nanogap is bound only to a source electrode, and an adjacen...
Abstract Molecules are predicted to be chemically tunable towards high thermoelectric efficiencies a...
We report the first concurrent determination of conductance (<i>G</i>) and thermopower (<i>S</i>) of...
It is essential for nano- and molecular-scale applications to explore and understand the electron an...
Molecular junctions offer unique opportunities for controlling charge transport on the atomic scale ...
Molecular junctions offer unique opportunities for controlling charge transport on the atomic scale ...
Waste heat recovery from the human body provides opportunities to power electronics with a source th...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
This article highlights a novel strategy for designing molecules with high thermoelectric performanc...
This article highlights a novel strategy for designing molecules with high thermoelectric performanc...
Seebeck coefficient measurements provide unique insights into the electronic structure of single-mol...
Seebeck coefficient measurements provide unique insights into the electronic structure of single-mol...
We report the synthesis and the single-molecule transport properties of three new oligo(phenyleneeth...
Seebeck coefficient measurements provide unique insights into the electronic structure of single-mol...
We report the synthesis and the single-molecule transport properties of three new oligo(phenyleneeth...
When a linear aromatic molecule within a nanogap is bound only to a source electrode, and an adjacen...
Abstract Molecules are predicted to be chemically tunable towards high thermoelectric efficiencies a...
We report the first concurrent determination of conductance (<i>G</i>) and thermopower (<i>S</i>) of...
It is essential for nano- and molecular-scale applications to explore and understand the electron an...
Molecular junctions offer unique opportunities for controlling charge transport on the atomic scale ...
Molecular junctions offer unique opportunities for controlling charge transport on the atomic scale ...
Waste heat recovery from the human body provides opportunities to power electronics with a source th...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
This article highlights a novel strategy for designing molecules with high thermoelectric performanc...
This article highlights a novel strategy for designing molecules with high thermoelectric performanc...