paper

Intrinsically high thermoelectric figure of merit of half-Heusler ZrRuTe

arXiv:1912.03883

Abstract

The electronic structure and thermoelectric properties of ZrRuTe-based Half-Heusler compounds are studied using density functional theory (DFT) and Boltzmann transport formalism. Based on rigorous computations of electron relaxation time considering electron-phonon interactions and lattice thermal conductivity considering phonon-phonon interactions, we find ZrRuTe to be an intrinsically good thermoelectric material. It has a high power factor of W/m-K and low W/m-K at 800 K. The thermoelectric figure of merit at 800 K is higher than similar other compounds. We have also studied the properties of the material as a function of doping and find the thermoelectric properties to be substantially enhanced for -doped ZrRuTe with the value raised to at this temperature. The electronic, thermodynamic, and transport properties of the material are thoroughly studied and discussed

9 pages, 23 figures