In spite of their relatively high lattice thermal conductivity κℓ, the XNiSn (X=Ti, Zr, or Hf) half-Heusler compounds are good thermoelectric materials. Previous studies have shown that κℓ can be reduced by sublattice alloying on the X site. To cast light on how the alloy composition affects κℓ, we study this system using the phonon Boltzmann-transport equation within the relaxation time approximation in conjunction with density functional theory. The effect of alloying through mass-disorder scattering is explored using the virtual crystal approximation to screen the entire ternary TixZryHf1−x−yNiSn phase diagram. The lowest lattice thermal conductivity is found for the TixHf1−xNiSn compositions; in particular, there is a shallow minimum ce...
© The Royal Society of Chemistry. Half-Heusler (HH) compounds are among the most promising thermoele...
Low thermal conductivity is an important materials property for thermoelectricity. The lattice therm...
International audienceHalf-Heusler phases are promising intermetallics for applications in thermo-el...
The present work investigates heat conduction from lattice vibrations in a class of materials called...
Thermoelectric application of half-Heusler compounds suffers from their fairly high thermal conducti...
We demonstrate successful application of first-principles-based thermal conductivity calculation on ...
High lattice thermal conductivity has been the bottleneck for further improvement of the thermoelect...
The thermoelectric properties of 54 different group 4 half-Heusler (HH) alloys have been studied fro...
International audienceA theoretical investigation of phonon properties from first-principles calcula...
Alloying and grain refinement have been conducted to reduce the lattice thermal conductivity of FeVS...
Over the past few years, the half-Heusler materials have attracted attention for their potential wit...
International audienceHalf-Heusler phases are promising intermetallics for applications in thermoele...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Intrinsically high lattice thermal conductivity has remained a major bottleneck for achieving a high...
Electron and phonon transport characteristics determines the potential of thermoelectric materials f...
© The Royal Society of Chemistry. Half-Heusler (HH) compounds are among the most promising thermoele...
Low thermal conductivity is an important materials property for thermoelectricity. The lattice therm...
International audienceHalf-Heusler phases are promising intermetallics for applications in thermo-el...
The present work investigates heat conduction from lattice vibrations in a class of materials called...
Thermoelectric application of half-Heusler compounds suffers from their fairly high thermal conducti...
We demonstrate successful application of first-principles-based thermal conductivity calculation on ...
High lattice thermal conductivity has been the bottleneck for further improvement of the thermoelect...
The thermoelectric properties of 54 different group 4 half-Heusler (HH) alloys have been studied fro...
International audienceA theoretical investigation of phonon properties from first-principles calcula...
Alloying and grain refinement have been conducted to reduce the lattice thermal conductivity of FeVS...
Over the past few years, the half-Heusler materials have attracted attention for their potential wit...
International audienceHalf-Heusler phases are promising intermetallics for applications in thermoele...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Intrinsically high lattice thermal conductivity has remained a major bottleneck for achieving a high...
Electron and phonon transport characteristics determines the potential of thermoelectric materials f...
© The Royal Society of Chemistry. Half-Heusler (HH) compounds are among the most promising thermoele...
Low thermal conductivity is an important materials property for thermoelectricity. The lattice therm...
International audienceHalf-Heusler phases are promising intermetallics for applications in thermo-el...