• Journal of Inorganic Materials
  • Vol. 34, Issue 3, 301 (2019)
Yi-Ming ZHOU1, Yu-Ling ZHOU2, Qian-Tao PANG3, Jian-Wei SHAO4, Li-Dong ZHAO1, [in Chinese]1, [in Chinese]2, [in Chinese]3, [in Chinese]4, and [in Chinese]1
Author Affiliations
  • 11. School of Materials Science and Engineering, Beihang University, Beijing 100191, China
  • 22. AVIC SAC Commercial Aircraft Company Ltd., Shenyang 110034, China
  • 33. Liaoning Tieling Sales Branch, Petro China Co. Ltd., Tieling 112000, China
  • 44. Shenyang Liming Areo-Engine Co. Ltd., Shenyang 110043, China
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    DOI: 10.15541/jim20180295 Cite this Article
    Yi-Ming ZHOU, Yu-Ling ZHOU, Qian-Tao PANG, Jian-Wei SHAO, Li-Dong ZHAO, [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Different Doping Sites of Ag on Cu2SnSe3 and Their Thermoelectric Property[J]. Journal of Inorganic Materials, 2019, 34(3): 301 Copy Citation Text show less

    Abstract

    Thermoelectric materials enable the direct inter-conversion between electrical energy and thermal energy. However, the conversion efficiency is limited by complex interdependent thermoelectric parameters, while the high performance thermoelectrics should simultaneously possess excellent electrical transport properties and poor thermal conductivities. The diamond-like compound Cu2SnSe3 is a promising middle-temperature thermoelectric material. In this work, the phase (Cu2Sn0.93Ag0.07Se3) with excellent electrical transport properties and the phase (Cu1.91Ag0.09SnSe3) with poor thermal conductivities were obtained just through Ag doping on the Sn and Cu sites, respectively. Meanwhile, their Seebeck coefficients were also quite different. To combine their advantages, the composites of Cu2Sn0.93Ag0.07Se3 and Cu1.91Ag0.09SnSe3 were fabricated through mechanical mixing and sintering. Benefited from the same crystal structure and the similar lattice parameters for these two phases, the small-mismatch phase interface is supposed to scatter phonons with little influence to the electrons, especially at high temperature. Therefore, the thermoelectric performance is improved due to the synergistically optimized electrical and thermal transport properties, which are well supported by the effective media theory for the composite.
    Yi-Ming ZHOU, Yu-Ling ZHOU, Qian-Tao PANG, Jian-Wei SHAO, Li-Dong ZHAO, [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Different Doping Sites of Ag on Cu2SnSe3 and Their Thermoelectric Property[J]. Journal of Inorganic Materials, 2019, 34(3): 301
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