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Oxidation Behavior of the Skutterudite Material Ce0.75Fe3CoSb12

  • Richard Drevet
  • , Lionel Aranda
  • , Carine Petitjean
  • , Nicolas David
  • , Delphine Veys-Renaux
  • , Patrice Berthod
  • Nancy Université

Research output: Contribution to journalArticlepeer-review

13 Citations (Scopus)

Abstract

A thermoelectric generator is a powerful system used to produce electricity by the action of heat. The development of nanostructured thermoelectric materials is wide-spread with the objective to improve their efficiency. However, if these materials are used at high temperatures under oxidative atmosphere (e.g., in air), they may suffer degradation in service, drastically decreasing their lifespan. This work investi-gates the oxidation behavior of an innovative skutterudite material made of cerium, iron, cobalt and antimony (Ce0.75Fe3CoSb12) either microstructured or nanostruc-tured. For that purpose, several oxidation experiments are carried out under a flow of synthetic air at 650 K (15 h, 50 h and 100 h). The oxide layers formed on surface are observed, and their characteristics (chemical composition, thickness, struc-ture) are compared to those obtained with microstructured Ce0.75Fe3CoSb12 sam-ples. As a result, it is observed that the nanostructuring of the skutterudite materials slightly slow down the oxidation reactions in air. Consequently, the nanostructured Ce0.75Fe3CoSb12 is established to be a promising thermoelectric material for use in oxidative environments.

Original languageEnglish
Pages (from-to)767-779
Number of pages13
JournalOxidation of Metals
Volume91
DOIs
Publication statusPublished - 14 Mar 2019
Externally publishedYes

Keywords

  • Nanostructuring
  • Oxidation
  • Skutterudite
  • Thermoelectric material

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