Thermoelectric power generation represents a promising approach to utilize waste heat. The most effective thermoelectric materials exhibit low thermal conductivity κ. However, less than 5% out of about 105 synthesized inorganic materials are documented with their κ values, while for the remaining 95% κ values are missing and challenging to predict. In this work, by combining graph neural networks and random forest approaches, we predict the thermal conductivity of all known inorganic materials in the Inorganic Crystal Structure Database, and chart the structural chemistry of κ into extended van-Arkel triangles. Together with the newly developed κ map and our theoretical tool, we identify rare-earth chalcogenides as promising candidates, of ...
The experimental search for new thermoelectric materials remains largely confined to a limited set o...
International audienceCompounds of low lattice thermal conductivity (LTC) are essential for seeking ...
Mitigation of the global energy crisis requires tailoring the thermal conductivity of materials. Low...
Thermoelectric power generation represents a promising approach to utilize waste heat. The most effe...
Low thermal conductivity materials are crucial for applications such as thermoelectric conversion of...
Thermoelectric materials can be used to construct devices which recycle waste heat into electricity....
Thermoelectric (TE) materials are among very few sustainable yet feasible energy solutions of presen...
Low lattice thermal conductivity is essential for high thermoelectric performance of a material. Lat...
We present an overview and preliminary analysis of computed thermoelectric properties for more than ...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Abstract Half-Heusler compound has drawn attention in a variety of fields as a candidate material fo...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Thermoelectric materials enable direct conversion of heat into electrical energy, providing a promis...
Over 60% of the energy in the United States is wasted, most of it as heat. This amounts to staggerin...
With the increasing challenges of global warming and depleting reserves of fossil fuels, there is an...
The experimental search for new thermoelectric materials remains largely confined to a limited set o...
International audienceCompounds of low lattice thermal conductivity (LTC) are essential for seeking ...
Mitigation of the global energy crisis requires tailoring the thermal conductivity of materials. Low...
Thermoelectric power generation represents a promising approach to utilize waste heat. The most effe...
Low thermal conductivity materials are crucial for applications such as thermoelectric conversion of...
Thermoelectric materials can be used to construct devices which recycle waste heat into electricity....
Thermoelectric (TE) materials are among very few sustainable yet feasible energy solutions of presen...
Low lattice thermal conductivity is essential for high thermoelectric performance of a material. Lat...
We present an overview and preliminary analysis of computed thermoelectric properties for more than ...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Abstract Half-Heusler compound has drawn attention in a variety of fields as a candidate material fo...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Thermoelectric materials enable direct conversion of heat into electrical energy, providing a promis...
Over 60% of the energy in the United States is wasted, most of it as heat. This amounts to staggerin...
With the increasing challenges of global warming and depleting reserves of fossil fuels, there is an...
The experimental search for new thermoelectric materials remains largely confined to a limited set o...
International audienceCompounds of low lattice thermal conductivity (LTC) are essential for seeking ...
Mitigation of the global energy crisis requires tailoring the thermal conductivity of materials. Low...