Abstract
We report the effect of Yb filling on the thermoelectric properties of polycrystalline Ge-substituted CoSb 3 skutterudite compounds. Electrical conductivity, Seebeck coefficient, Hall effect, and thermal conductivity measurements were performed on polycrystalline Yb yCo 4Ge 0.5Sb 11.5 (y = 0, 0.1, 0.2, 0.3, 0.4 and 0.5). In Yb yCo 4Ge 0.5Sb 11.5, the Ge atom acts as an electron acceptor that charge compensates for the Yb ions, resulting in p-type carrier conductivity at low Yb compositions y = 0 and 0.1 and n-type one at high y = 0.2-0.5. Due to the effect of charge compensation for Yb ions by Ge substitution, the Yb filling fraction limit in Yb yCo 4Ge 0.5Sb 11.5 is larger than that in Yb yCo 4Sb 12. The lattice thermal conductivity for Yb yCo 4Ge 0.5Sb 11.5 drastically decreases from 8 W/(m·K) (y = 0) to 2.4W/(m·K) (y = 0.5) with increasing Yb composition. The marked reduction of the lattice thermal conductivity can be attributed to the increase in the filling fraction of Yb, whose localized thermal vibration, "rattling" motion, substantially contributes to the scattering of phonons. The influence of Ge substitution on the thermoelectric properties in Yb yCo 4Ge 0.5Sb 11.5 is also discussed. © 2005 The Thermoelectrics Society of Japan.
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Mori, H., Anno, H., & Matsubara, K. (2005). Effect of Yb Filling on Thermoelectric properties of Ge-substituted CoSb 3 sutterudites. Materials Transactions, 46(7), 1476–1480. https://doi.org/10.2320/matertrans.46.1476
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