| Literature DB >> 31803470 |
James M Ma1,2, Samantha M Clarke1,2, Wolfgang G Zeier3, Trinh Vo1, Paul Von Allmen1, G Jeffrey Snyder3, Richard B Kaner2,4, Jean-Pierre Fleurial1, Sabah K Bux1.
Abstract
The thermoelectric properties from 300 - 1275 K of calcium-doped La3-xTe4 are reported. La3-xTe4 is a high temperature n-type thermoelectric material with a previously reported zTmax ~ 1.1 at 1273 K and x = 0.23. Computational modeling suggests the La atoms define the density of states of the conduction band for La3-xTe4. Doping with Ca2+ on the La3+ site is explored as a means of modifying the density of states to improve the power factor and to achieve a finer control over the carrier concentration. High purity, oxide-free samples are produced by ball milling of the elements and consolidation by spark plasma sintering. Calcium substitution upon the lanthanum site was confirmed by a combination of Rietveld refinements of powder X-ray diffraction data and wave dispersive spectroscopy. A zTmax ~ 1.2 is reached at 1273 K for the composition La2.2Ca0.78Te4 and the relative increase compared to La3-xTe4 is attributed to the finer carrier concentration.Entities:
Year: 2015 PMID: 31803470 PMCID: PMC6892470 DOI: 10.1039/C5TC01648G
Source DB: PubMed Journal: J Mater Chem C Mater ISSN: 2050-7526 Impact factor: 7.393