International audienceCompounds of low lattice thermal conductivity (LTC) are essential for seeking thermoelectric materials with high conversion efficiency. Some strategies have been used to decrease LTC. However, such trials have yielded successes only within a limited exploration space. Here, we report the virtual screening of a library containing 54,779 compounds. Our strategy is to search the library through Bayesian optimization using for the initial data the LTC obtained from first-principles anharmonic lattice-dynamics calculations for a set of 101 compounds. We discovered 221 materials with very low LTC. Two of them even have an electronic band gap <1 eV, which makes them exceptional candidates for thermoelectric applications. In a...
We present an overview and preliminary analysis of computed thermoelectric properties for more than ...
A finite electronic band gap is a standard filter in high-throughput screening of materials using de...
The predictive performance screening of novel compounds can significantly promote the discovery of e...
Low thermal conductivity materials are crucial for applications such as thermoelectric conversion of...
Low lattice thermal conductivity is essential for high thermoelectric performance of a material. Lat...
The lattice thermal conductivity (κ_{ω}) is a key property for many potential applications of compou...
The experimental search for new thermoelectric materials remains largely confined to a limited set o...
Thermoelectric power generation represents a promising approach to utilize waste heat. The most effe...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Thermoelectric materials play an important role in energy conversion as they represent environmental...
Thermal conductivity is a key parameter in designing high performance thermoelectric materials. A mu...
First-principles prediction of lattice thermal conductivity κ(L) of strongly anharmonic crystals is ...
Abstract Half-Heusler compound has drawn attention in a variety of fields as a candidate material fo...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Chalcopyrite-structured semiconductors have promising potential as low-cost thermoelectric materials...
We present an overview and preliminary analysis of computed thermoelectric properties for more than ...
A finite electronic band gap is a standard filter in high-throughput screening of materials using de...
The predictive performance screening of novel compounds can significantly promote the discovery of e...
Low thermal conductivity materials are crucial for applications such as thermoelectric conversion of...
Low lattice thermal conductivity is essential for high thermoelectric performance of a material. Lat...
The lattice thermal conductivity (κ_{ω}) is a key property for many potential applications of compou...
The experimental search for new thermoelectric materials remains largely confined to a limited set o...
Thermoelectric power generation represents a promising approach to utilize waste heat. The most effe...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Thermoelectric materials play an important role in energy conversion as they represent environmental...
Thermal conductivity is a key parameter in designing high performance thermoelectric materials. A mu...
First-principles prediction of lattice thermal conductivity κ(L) of strongly anharmonic crystals is ...
Abstract Half-Heusler compound has drawn attention in a variety of fields as a candidate material fo...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Chalcopyrite-structured semiconductors have promising potential as low-cost thermoelectric materials...
We present an overview and preliminary analysis of computed thermoelectric properties for more than ...
A finite electronic band gap is a standard filter in high-throughput screening of materials using de...
The predictive performance screening of novel compounds can significantly promote the discovery of e...