Abstract Half-Heusler compound has drawn attention in a variety of fields as a candidate material for thermoelectric energy conversion and spintronics technology. When the half-Heusler compound is incorporated into the device, the control of high lattice thermal conductivity owing to high crystal symmetry is a challenge for the thermal manager of the device. The calculation for the prediction of lattice thermal conductivity is an important physical parameter for controlling the thermal management of the device. We examined whether lattice thermal conductivity prediction by machine learning was possible on the basis of only the atomic information of constituent elements for thermal conductivity calculated by the density functional theory in ...
Half-Heusler materials are strong candidates for thermoelectric applications due to their high weigh...
In this study, we attempted to model vacancy ordered half Heusler compounds with 18 valence electron...
Low thermal conductivity is an important materials property for thermoelectricity. The lattice therm...
Low lattice thermal conductivity is essential for high thermoelectric performance of a material. Lat...
Low thermal conductivity materials are crucial for applications such as thermoelectric conversion of...
Abstract Over the past few decades, molecular dynamics simulations and first-principles calculations...
The lattice thermal conductivity (κ_{ω}) is a key property for many potential applications of compou...
Thermoelectric power generation represents a promising approach to utilize waste heat. The most effe...
We demonstrate successful application of first-principles-based thermal conductivity calculation on ...
First principles-based modeling on phonon dynamics and transport using density functional theory and...
International audienceHeusler alloys, full and half-, thanks to their high versatility of compositio...
Half-Heusler materials are strong candidates for thermoelectric applications due to their high weigh...
High-throughput computational and experimental design of materials aided by machine learning have be...
International audienceHalf-Heusler phases are promising intermetallics for applications in thermoele...
The predictive performance screening of novel compounds can significantly promote the discovery of e...
Half-Heusler materials are strong candidates for thermoelectric applications due to their high weigh...
In this study, we attempted to model vacancy ordered half Heusler compounds with 18 valence electron...
Low thermal conductivity is an important materials property for thermoelectricity. The lattice therm...
Low lattice thermal conductivity is essential for high thermoelectric performance of a material. Lat...
Low thermal conductivity materials are crucial for applications such as thermoelectric conversion of...
Abstract Over the past few decades, molecular dynamics simulations and first-principles calculations...
The lattice thermal conductivity (κ_{ω}) is a key property for many potential applications of compou...
Thermoelectric power generation represents a promising approach to utilize waste heat. The most effe...
We demonstrate successful application of first-principles-based thermal conductivity calculation on ...
First principles-based modeling on phonon dynamics and transport using density functional theory and...
International audienceHeusler alloys, full and half-, thanks to their high versatility of compositio...
Half-Heusler materials are strong candidates for thermoelectric applications due to their high weigh...
High-throughput computational and experimental design of materials aided by machine learning have be...
International audienceHalf-Heusler phases are promising intermetallics for applications in thermoele...
The predictive performance screening of novel compounds can significantly promote the discovery of e...
Half-Heusler materials are strong candidates for thermoelectric applications due to their high weigh...
In this study, we attempted to model vacancy ordered half Heusler compounds with 18 valence electron...
Low thermal conductivity is an important materials property for thermoelectricity. The lattice therm...