There is a worldwide race to find materials with high thermoelectric efficiency to convert waste heat to useful energy in consumer electronics and server farms. Here, we propose a radically new method to enhance simultaneously the electrical conductance and thermopower and suppress heat transport through ultra-thin materials formed by single radical molecules. This leads to a significant enhancement of room temperature thermoelectric efficiency. The proposed strategy utilises the formation of transport resonances due to singly occupied spin orbitals in radical molecules. This enhances the electrical conductance by a couple of orders of magnitude in molecular junctions formed by nitroxide radicals compared to the non-radical counterpart. It ...
Understanding phonon transport at a molecular scale is fundamental to the development of high-perfor...
While greater than 80% of all electricity continues to be generated by heat engines, methods of dire...
We provide a brief overview of recent measurements and predictions of thermoelectric properties of s...
There is a worldwide race to find materials with high thermoelectric efficiency to convert waste hea...
Organic thermoelectric materials have potential for wearable heating, cooling, and energy generation...
Organic thermoelectric materials have potential for wearable heating, cooling, and energy generation...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
Integrating radical (open‐shell) species into non‐cryogenic nanodevices is key to unlocking the pote...
We demonstrate how redox control of intra-molecular quantum interference in phase-coherent molecular...
We show that coherent electron transport through zero-dimensional systems can be used to tailor the ...
More than 70 % of the primary energy consumed world-wide is wasted, mostly as heat below 100 °C[1]. ...
Focus of the review is on experimental set-ups and theoretical proposals aimed to enhance thermoelec...
The design of thermoelectric materials for the efficient conversion of waste heat into electricity r...
Understanding phonon transport at a molecular scale is fundamental to the development of high-perfor...
While greater than 80% of all electricity continues to be generated by heat engines, methods of dire...
We provide a brief overview of recent measurements and predictions of thermoelectric properties of s...
There is a worldwide race to find materials with high thermoelectric efficiency to convert waste hea...
Organic thermoelectric materials have potential for wearable heating, cooling, and energy generation...
Organic thermoelectric materials have potential for wearable heating, cooling, and energy generation...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
Simultaneous engineering of electron and phonon transport through nanoscale molecular junctions is f...
Integrating radical (open‐shell) species into non‐cryogenic nanodevices is key to unlocking the pote...
We demonstrate how redox control of intra-molecular quantum interference in phase-coherent molecular...
We show that coherent electron transport through zero-dimensional systems can be used to tailor the ...
More than 70 % of the primary energy consumed world-wide is wasted, mostly as heat below 100 °C[1]. ...
Focus of the review is on experimental set-ups and theoretical proposals aimed to enhance thermoelec...
The design of thermoelectric materials for the efficient conversion of waste heat into electricity r...
Understanding phonon transport at a molecular scale is fundamental to the development of high-perfor...
While greater than 80% of all electricity continues to be generated by heat engines, methods of dire...
We provide a brief overview of recent measurements and predictions of thermoelectric properties of s...