Half-Heusler alloys are leading candidate materials for large scale thermoelectric power generation. In the past decade, substantial improvements have been made to the established n-types based on XIVNiSn, and exciting new p-types based on XVFeSb and ZrCoBi have been discovered. This has been achieved through careful experimental work and by increased fundamental insight. In particular, advances in materials synthesis and compositional optimisation guided by empirical modelling have been key to extracting more performance from half-Heuslers alloys. This review summarises recent progress for the main classes of half-Heusler alloys, including their fundamental electronic and thermal properties, processing, and thermoelectric performance. It a...
The n-type NbCoSn, ZrNiSn and p-type NbFeSb half-Heuslers are promising thermoelectric materials wit...
The n-type NbCoSn, ZrNiSn and p-type NbFeSb half-Heuslers are promising thermoelectric materials wit...
The efficiency of thermal-to-electrical conversion depends on high electrical conductivity (σ), high...
Half-Heusler alloys are leading candidate materials for large scale thermoelectric power generation....
Half-Heusler phases (space group F 4 ¯ 3 m , C1b) have recently captured much attentio...
ZrCoSb based half-Heusler (HH) alloys have been widely studied as a p-type thermoelectric (TE) mater...
Half-Heusler (HH) compounds are some of the most promising candidates among the medium-temperature t...
Here we investigate the half-Heusler ZrNiPb as a n-type thermoelectric material. Our results show th...
Half-Heusler (HH) alloys have attracted considerable interest as promising thermoelectric (TE) mater...
Half-Heusler (HH) compounds are important high temperature thermoelectric (TE) materials and have at...
Half-Heusler (HH) compounds are important high temperature thermoelectric (TE) materials and have at...
Half-Heusler (HH) materials have been actively explored for thermoelectric (TE) based power generati...
Half-Heusler (HH) compounds are important high temperature thermoelectric (TE) materials and have at...
Nanostructuring has rejuvenated great interest in thermoelectric (TE) based power generation by enab...
The n-type NbCoSn, ZrNiSn and p-type NbFeSb half-Heuslers are promising thermoelectric materials wit...
The n-type NbCoSn, ZrNiSn and p-type NbFeSb half-Heuslers are promising thermoelectric materials wit...
The n-type NbCoSn, ZrNiSn and p-type NbFeSb half-Heuslers are promising thermoelectric materials wit...
The efficiency of thermal-to-electrical conversion depends on high electrical conductivity (σ), high...
Half-Heusler alloys are leading candidate materials for large scale thermoelectric power generation....
Half-Heusler phases (space group F 4 ¯ 3 m , C1b) have recently captured much attentio...
ZrCoSb based half-Heusler (HH) alloys have been widely studied as a p-type thermoelectric (TE) mater...
Half-Heusler (HH) compounds are some of the most promising candidates among the medium-temperature t...
Here we investigate the half-Heusler ZrNiPb as a n-type thermoelectric material. Our results show th...
Half-Heusler (HH) alloys have attracted considerable interest as promising thermoelectric (TE) mater...
Half-Heusler (HH) compounds are important high temperature thermoelectric (TE) materials and have at...
Half-Heusler (HH) compounds are important high temperature thermoelectric (TE) materials and have at...
Half-Heusler (HH) materials have been actively explored for thermoelectric (TE) based power generati...
Half-Heusler (HH) compounds are important high temperature thermoelectric (TE) materials and have at...
Nanostructuring has rejuvenated great interest in thermoelectric (TE) based power generation by enab...
The n-type NbCoSn, ZrNiSn and p-type NbFeSb half-Heuslers are promising thermoelectric materials wit...
The n-type NbCoSn, ZrNiSn and p-type NbFeSb half-Heuslers are promising thermoelectric materials wit...
The n-type NbCoSn, ZrNiSn and p-type NbFeSb half-Heuslers are promising thermoelectric materials wit...
The efficiency of thermal-to-electrical conversion depends on high electrical conductivity (σ), high...