• Title of article

    A Promising Thermoelectric Material: Zn4Sb3 or Zn6Sb5. Its Composition, Structure, Stability, and Polymorphs. Structure and Stability of Zn1-Sb

  • Author/Authors

    Mozharivskyj، Yurij نويسنده , , Miller، Gordon J. نويسنده , , Budko، Sergey L. نويسنده , , Pecharsky، Alexandra O. نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 2004
  • Pages
    -157
  • From page
    158
  • To page
    0
  • Abstract
    Composition, crystal structure, and stability of the thermoelectric material, known in the literature as "Zn4Sb3", has been characterized using low- and room-temperature single-crystal X-ray diffraction techniques, as well as in situ room- and high-temperature powder X-ray diffraction methods. We have found that the Zn4Sb3 phase does not exist below 767 K (the transition temperature); it is the Zn6-Sb5 phase that is erroneously assigned the Zn4Sb3 composition and is considered to be a promising thermoelectric material. The structure of Zn6-Sb5 is similar to that of "Zn4Sb3" but no Zn\Sb mixture is observed on any Sb site. Instead, a significant deficiency on the Zn site is discovered. There are two, not one, as previously reported, Zn6-Sb5 polymorphs below room temperature. In dynamic vacuum and at elevated temperatures the Zn6-Sb5 phase becomes zinc poorer due to zinc sublimation and eventually decomposes into ZnSb and Zn before reaching its melting temperature of 841 K. The binary Zn1-Sb compound also loses zinc in dynamic vacuum and at high temperatures and decomposes into Sb and Zn. The structure of Zn1-Sb (CdSb-type) is analyzed using powder X-ray diffraction techniques.
  • Journal title
    CHEMISTRY OF MATERIALS
  • Serial Year
    2004
  • Journal title
    CHEMISTRY OF MATERIALS
  • Record number

    115224