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Thermoelectric SnS and SnS-SnSe solid solutions prepared by mechanical alloying and spark plasma sintering: Anisotropic thermoelectric properties

机译:通过机械合金化和火花等离子体烧结制备的热电SnS和SnS-SnSe固溶体:各向异性热电性质

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摘要

P–type SnS compound and SnS1−xSex solid solutions were prepared by mechanical alloying followed by spark plasma sintering (SPS) and their thermoelectric properties were then studied in different compositions (x = 0.0, 0.2, 0.5, 0.8) along the directions parallel (//) and perpendicular (⊥) to the SPS–pressurizing direction in the temperature range 323–823 Κ. SnS compound and SnS1−xSex solid solutions exhibited anisotropic thermoelectric performance and showed higher power factor and thermal conductivity along the direction ⊥ than the // one. The thermal conductivity decreased with increasing contents of Se and fell to 0.36 W m−1 K−1 at 823 K for the composition SnS0.5Se0.5. With increasing selenium content (x) the formation of solid solutions substantially improved the electrical conductivity due to the increased carrier concentration. Hence, the optimized power factor and reduced thermal conductivity resulted in a maximum ZT value of 0.64 at 823 K for SnS0.2Se0.8 along the parallel direction.
机译:P型SnS化合物和SnS1-xSex固溶体是通过机械合金化,然后通过火花等离子体烧结(SPS)制备的,然后沿平行方向(x = 0.0,0.2,0.5,0.8)研究了它们的热电性能。 //),并在323-823Κ温度范围内垂直于(SPS)加压方向(⊥)。 SnS化合物和SnS1-xSex固溶体表现出各向异性的热电性能,并沿⊥方向显示比//高的功率因数和热导率。 SnS0.5Se0.5的热导率随Se含量的增加而降低,在823 K时降至0.36 W m -1 K -1 。随着硒含量(x)的增加,由于增加的载流子浓度,固溶体的形成大大提高了电导率。因此,优化的功率因数和降低的热导率导致SnS0.2Se0.8沿平行方向在823 K处的最大ZT值为0.64。

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