• Title of article

    Nanovoids in thermoelectric β-Zn4Sb3: A possibility for nanoengineering via Zn diffusion Original Research Article

  • Author/Authors

    Protima Rauwel، نويسنده , , Ole Martin L?vvik، نويسنده , , Erwan Rauwel، نويسنده , , Johan Tafto، نويسنده ,

  • Issue Information
    دوهفته نامه با شماره پیاپی سال 2011
  • Pages
    10
  • From page
    5266
  • To page
    5275
  • Abstract
    The binary Zn4Sb3 phase is a promising material for thermoelectric applications due to its extraordinarily low thermal conductivity. The present study attempts to rationalize this property by investigating its nanostructure. β-Zn4Sb3 samples with varying Zn content were thus synthesized, quenched from the melt and annealed at 350 °C. Their nanostructure was observed using transmission electron microscopy. The samples presented in this work have Zn:Sb atomic ratios of 1.30 and 1.33 and exhibit a single phase of β-Zn4Sb3 in X-ray diffraction studies. Transmission electron microscopy (TEM) observations revealed nanoporous morphologies for both compositions, with a random distribution of the voids. Both samples contain voids, while the sample with Zn:Sb = 1.33 also consists of Zn nanoinclusions. Density functional theory calculations were carried out to study the stability of atomistic β-Zn4Sb3 models with varying Zn content. This was used to suggest a mechanism for the formation of Zn nanoparticles and subsequently nanovoids. The calculations imply that the Zn solubility in the Zn4Sb3 matrix increases with decreasing temperature. Combined with a high Zn diffusivity, this work explains how Zn could leave the nanoprecipitates during annealing, resulting in the voids seen by TEM.
  • Keywords
    Nanovoids , Thermoelectricity , Density functional theory , Diffusion , electron microscopy
  • Journal title
    ACTA Materialia
  • Serial Year
    2011
  • Journal title
    ACTA Materialia
  • Record number

    1145773