Lattice thermal conductivity of filled skutterudites: An anharmonicity perspective

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Abstract

We report a phenomenological model to calculate the high-temperature lattice thermal conductivity of filled skutterudite antimonides. The model needs no phonon resonant scattering terms. Instead, we assume that umklapp processes dominate the high-temperature phonon scattering. In order to represent the anharmonicity introduced by the filling atom, we introduce a Gaussian term into the relaxation time of the umklapp process. The developed model agrees remarkably well with the experimental results of REfCo4Sb12 and REfFe4Sb12 (RE=Yb, Ba, and Ca) alloys. To further test the validity of our model, we calculate the lattice thermal conductivity of nanostructured or multi-filled skutterudites. The calculation results are also in good agreement with experiment, increasing our confidence in the developed anharmonicity model.

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Geng, H., Meng, X., Zhang, H., & Zhang, J. (2014). Lattice thermal conductivity of filled skutterudites: An anharmonicity perspective. Journal of Applied Physics, 116(16). https://doi.org/10.1063/1.4898686

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