• Journal of Inorganic Materials
  • Vol. 36, Issue 4, 399 (2021)
Jianfeng CAI1, Hongxiang WANG1、2, Guoqiang LIU1、2, and Jun JIANG1、2、*
Author Affiliations
  • 11. Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China
  • 22. University of Chinese Academy of Sciences, Beijing 100049, China
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    DOI: 10.15541/jim20200659 Cite this Article
    Jianfeng CAI, Hongxiang WANG, Guoqiang LIU, Jun JIANG. Designing High Entropy Structure in Thermoelectrics[J]. Journal of Inorganic Materials, 2021, 36(4): 399 Copy Citation Text show less
    Crystal structure (a) and electronic structure (b) of CuInTe2
    1. Crystal structure (a) and electronic structure (b) of CuInTe2
    Density of State (DOS) of CuInTe2, including the partial DOS for Cu-d and Te-p orbitals
    2. Density of State (DOS) of CuInTe2, including the partial DOS for Cu-d and Te-p orbitals
    XRD patterns for CuInTe2 and its high entropy solid solutions
    3. XRD patterns for CuInTe2 and its high entropy solid solutions
    Electrical conductivity (a) and Seebeck coefficient (b) for CuInTe2 and its high entropy solid solutions
    4. Electrical conductivity (a) and Seebeck coefficient (b) for CuInTe2 and its high entropy solid solutions
    Thermal conductivity (a) and ZT (b) for CuInTe2 and its high entropy solid solutions
    5. Thermal conductivity (a) and ZT (b) for CuInTe2 and its high entropy solid solutions
    Electrical conductivity (a) and thermal conductivity (b) for SnTe-AgSbSe2 solid solutions[28]
    6. Electrical conductivity (a) and thermal conductivity (b) for SnTe-AgSbSe2 solid solutions[28]
    SamplenH/cm-3μH/(cm2·V-1·s-1)
    CuInTe23.1×101878.1
    Cu0.5Ag0.5Ga0.5In0.5Te21.3×101810.4
    Cu0.5Ag0.5Zn0.25Ga0.25Ge0.25In0.25Te25.6×10191.2
    Cu0.8Ag0.2Zn0.1Ga0.4Ge0.1In0.4Te23.2×101917.8
    Table 1. Carrier concentrations and mobilities of samples with different components at room temperature
    Jianfeng CAI, Hongxiang WANG, Guoqiang LIU, Jun JIANG. Designing High Entropy Structure in Thermoelectrics[J]. Journal of Inorganic Materials, 2021, 36(4): 399
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