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首页> 外文期刊>Journal of Electronic Materials >Enhanced Thermoelectric Properties Obtained by Compositional Optimization in p-Type Bi_(x)Sb_(2-x)Te_(3) Fabricated by Mechanical Alloying and Spark Plasma Sintering
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Enhanced Thermoelectric Properties Obtained by Compositional Optimization in p-Type Bi_(x)Sb_(2-x)Te_(3) Fabricated by Mechanical Alloying and Spark Plasma Sintering

机译:机械合金化和火花等离子体烧结制备的p型Bi_(x)Sb_(2-x)Te_(3)的成分优化获得增强的热电性能

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摘要

Bi_(x)Sb_(2-x)Te_(3) bulk alloys are known as the best p-type thermoelectric materials near room temperature. In this work, single-phase Bi_(x)Sb_(2-x)Te_(3) (x velence 0.2, 0.25, 0.3, 0.34, 0.38, 0.42, 0.46, and 0.5) alloys were prepared by spark plasma sintering (SPS) using mechanical alloying (MA)-derived powders. A small amount (0.1 vol.percent) of SiC nanoparticles was added to improve the mechanical properties and to reduce the thermal conductivity of the alloys. The electrical resistivity decreases significantly with increasing ratio of Sb to Bi in spite of the weaker decreasing trend in Seebeck coefficient, whereby the power factor at 323 K reaches 3.14 X 10~(-3) W/mK~(2) for a sample with x velence 0.3, obviously higher than that at x velence 0.5 (2.27 X 10~(-3) W/mK~(2)), a composition commonly used for ingots. Higher thermal conductivities at low temperatures are obtained at the compositions with lower x values, but they tend to decrease with temperature. As a result, higher ZT values are obtained for Bi_(0.3)Sb_(1.7)Te_(3), with a maximum ZT value of 1.23 at 423 K, about twice the ZT value (about 0.6) of Bi_(0.5)Sb_(1.5)Te_(3) at the same temperature.
机译:Bi_(x)Sb_(2-x)Te_(3)块状合金被称为接近室温的最佳p型热电材料。在这项工作中,通过火花等离子体烧结(SPS)制备了单相Bi_(x)Sb_(2-x)Te_(3)(x均速0.2、0.25、0.3、0.34、0.38、0.42、0.46和0.5)合金)使用机械合金化(MA)衍生的粉末。添加少量(0.1%(体积))的SiC纳米颗粒以改善机械性能并降低合金的导热性。尽管塞贝克系数的下降趋势较弱,但电阻率仍随Sb与Bi的比值的增加而显着降低,因此对于样品为323的样品,在323 K下的功率因数达到3.14 X 10〜(-3)W / mK〜(2) x velence 0.3,明显高于x velence 0.5(2.27 X 10〜(-3)W / mK〜(2)),通常用于铸锭。具有较低x值的组合物在低温下获得较高的热导率,但是它们倾向于随温度降低。结果,对于Bi_(0.3)Sb_(1.7)Te_(3)获得了更高的ZT值,在423 K下的最大ZT值为1.23,约为Bi_(0.5)Sb_(的ZT值(约0.6)的两倍。 1.5)Te_(3)在相同温度下。

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