Synthesis and Thermoelectric Properties of (Sr,Yb)yCo4Sb12 Double Filled Skutterudites

S. Bai, X.Y. Zhao, Y. Pei, L.D. Chen, W.Q. Zhang
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引用次数: 5

Abstract

(Sr,Yb)yCo4Sb12 double filled skutterudites are synthesized by a melting method and sintered by Spark Plasma Sintering (SPS) technique. Small amount of Yb2O3 and YbSb2 as impurity phases are found with high ytterbium content in the X-ray diffraction patterns of sintered materials. The thermal conductivity, electrical conductivity and Seebeck coefficient are measured from room temperature to 850 K. The influence of different filling fractions of ytterbium on the thermoelectric properties of (Sr,Yb)yCo4Sb12 is studied. The lattice thermal conductivity of double filled skutterudites is reduced dramatically as compared to that of Sr single-filled skutterudites with similar filling fractions. An enhancement in power factor and dimensionless thermoelectric figure of merit (ZT) is observed in the double filled skutterudites
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(Sr,Yb)yCo4Sb12双填充skutterurites的合成及热电性能
采用熔炼法合成了(Sr,Yb)yCo4Sb12双填充方角长石,并采用火花等离子烧结(SPS)技术进行了烧结。在烧结材料的x射线衍射图中发现少量的Yb2O3和YbSb2为杂质相,且钇含量高。在室温至850 K范围内测量了导热系数、电导率和塞贝克系数。研究了不同填充量的镱对(Sr,Yb)yCo4Sb12热电性能的影响。与填充分数相似的锶单填充方晶石相比,双填充方晶石的晶格导热系数显著降低。在双填充方菱矿中观察到功率因数和无因次热电优值(ZT)的提高
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