Molecular junctions exhibit a rich and tunable set of thermal transport phenomena. However, the predicted high thermoelectric efficiencies, phonon quantum interference effects, rectification, and nonlinear heat transport properties of organic molecules are yet to be verified because suitable experimental techniques have been missing. Here, by combining the break junction technique with suspended heat-flux sensors with picowatt per Kelvin sensitivity, we measured the thermal and electrical conductance of single organic molecules at room temperature simultaneously. We used this method to study the thermal transport properties of two model systems, namely, dithiol-oligo(phenylene ethynylene) and octane dithiol junctions with gold electrodes. I...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
Understanding and controlling heat transport in molecular junctions would provide new routes to desi...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
Molecular junctions exhibit a rich and tunable set of thermal transport phenomena. However, the pred...
Molecular junctions exhibit a rich and tunable set of thermal transport phenomena. However, the pred...
This thesis reports on the development and demonstration of a novel experimental technique to invest...
Abstract Molecules are predicted to be chemically tunable towards high thermoelectric efficiencies a...
Single-molecule junctions have been extensively used to probe properties as diverse as electrical co...
Motivated by recent experiments, we present here a systematic ab-initio study of the length dependen...
There has been growing research interest in the field of nanoscale thermal transport over the past t...
Phonon transport is a dominant mechanism of thermal conduction in solids that has been studied for d...
Motivated by recent experiments, we present here an ab initio study of the impact of the phonon tran...
It is essential for nano- and molecular-scale applications to explore and understand the electron an...
The energy dependent thermoelectric response of a single molecule contains valuable information abou...
We report the first concurrent determination of conductance (<i>G</i>) and thermopower (<i>S</i>) of...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
Understanding and controlling heat transport in molecular junctions would provide new routes to desi...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
Molecular junctions exhibit a rich and tunable set of thermal transport phenomena. However, the pred...
Molecular junctions exhibit a rich and tunable set of thermal transport phenomena. However, the pred...
This thesis reports on the development and demonstration of a novel experimental technique to invest...
Abstract Molecules are predicted to be chemically tunable towards high thermoelectric efficiencies a...
Single-molecule junctions have been extensively used to probe properties as diverse as electrical co...
Motivated by recent experiments, we present here a systematic ab-initio study of the length dependen...
There has been growing research interest in the field of nanoscale thermal transport over the past t...
Phonon transport is a dominant mechanism of thermal conduction in solids that has been studied for d...
Motivated by recent experiments, we present here an ab initio study of the impact of the phonon tran...
It is essential for nano- and molecular-scale applications to explore and understand the electron an...
The energy dependent thermoelectric response of a single molecule contains valuable information abou...
We report the first concurrent determination of conductance (<i>G</i>) and thermopower (<i>S</i>) of...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
Understanding and controlling heat transport in molecular junctions would provide new routes to desi...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...