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Thermal Stability of Mg2Si0.6Sn0.4 under Oxidation Conditions.
Oulfarsi, Mostafa; David, Nicolas; Aranda, Lionel; Medjahdi, Ghouti; Ihou-Mouko, Hilaire; Dauscher, Anne.
Afiliação
  • Oulfarsi M; Université de Lorraine, UMR CNRS 7198, Institut Jean Lamour, Nancy 54011, France.
  • David N; Université de Lorraine, UMR CNRS 7198, Institut Jean Lamour, Nancy 54011, France.
  • Aranda L; Université de Lorraine, UMR CNRS 7198, Institut Jean Lamour, Nancy 54011, France.
  • Medjahdi G; Université de Lorraine, UMR CNRS 7198, Institut Jean Lamour, Nancy 54011, France.
  • Ihou-Mouko H; HOTBLOCK ONBOARD (HBOB), 43 Chemin du Vieux Chêne, Meylan 38240, France.
  • Dauscher A; Université de Lorraine, UMR CNRS 7198, Institut Jean Lamour, Nancy 54011, France.
ACS Appl Mater Interfaces ; 15(18): 22616-22625, 2023 May 10.
Article em En | MEDLINE | ID: mdl-37126574
ABSTRACT
The use of Mg2Si0.6Sn0.4 under air in thermoelectric modules in the mid-temperature range of 400-600 °C is linked to its ability to resist oxidation. In this study, oxidation experiments performed at 400 °C under air evidenced the stability of the material, either under static conditions (up to 100 h) or under severe heating-cooling cyclic conditions (up to 400 cycles), showing its ability to be used in a reliable way at this temperature. By combining thermogravimetry, scanning electron microscopy, temperature X-ray diffraction analysis, and mechanical and thermodynamic considerations, a mechanism is proposed explaining how Mg2Si0.6Sn0.4 further undergoes decomposition with time under air when treated above 500 °C. The presence of Sn and the formation of various oxides are the key parameters of the material's degradation.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article