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Recent Advances in Nanostructured Thermoelectric Half-Heusler Compounds

Nanomaterials · 2012 · Vol. 2(4) · pp. 379–412
Wenjie XieAnke WeidenkaffXinfeng TangQingjie ZhangJoseph PoonTerry Tritt

Abstract

Half-Heusler (HH) alloys have attracted considerable interest as promising thermoelectric (TE) materials in the temperature range around 700 K and above, which is close to the temperature range of most industrial waste heat sources. The past few years have seen nanostructuing play an important role in significantly enhancing the TE performance of several HH alloys. In this article, we briefly review the recent progress and advances in these HH nanocomposites. We begin by presenting the structure of HH alloys and the different strategies that have been utilized for improving the TE properties of HH alloys. Next, we review the details of HH nanocomposites as obtained by different techniques. Finally, the review closes by highlighting several promising strategies for further research directions in these very promising TE materials.

Advanced Thermoelectric Materials and DevicesHeusler alloys: electronic and magnetic propertiesChemical and Physical Properties of MaterialsThermoelectric effectThermoelectric materialsThermal management of electronic devices and systemsRange (aeronautics)Nanocomposite

Funding

  • U.S. Department of Energy
  • South Carolina EPSCoR
  • Higher Education Discipline Innovation Project
  • National Key Research and Development Program of China
  • Office of Experimental Program to Stimulate Competitive Research
Citations
337
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131
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Nature Materials · 2008 · 10,854 citations
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