High-temperature electrical and thermal transport properties of fully filled skutterudites RFe_(4)Sb_(12) (R = Ca, Sr, Ba, La, Ce, Pr, Nd, Eu, and Yb)
Abstract
Fully filled skutterudites RFe_(4)Sb_(12) (R = Ca, Sr, Ba, La, Ce, Pr, Nd, Eu, and Yb) have been prepared and the high-temperature electrical and thermal transport properties are investigated systematically. Lattice constants of RFe_(4)Sb_(12) increase almost linearly with increasing the ionic radii of the fillers, while the lattice expansion in filled structure is weakly influenced by the filler valence charge states. Using simple charge counting, the hole concentration in RFe_(4)Sb_(12) with divalent fillers (R = Ca, Sr, Ba, Eu, and Yb) is much higher than that in RFe4Sb12 with trivalent fillers (R = La, Ce, Pr, and Nd), resulting in relatively high electrical conductivity and low Seebeck coefficient. It is also found that RFe_(4)Sb_(12) filled skutterudites having similar filler valence charge states exhibit comparable electrical conductivity and Seebeck coefficient, and the behavior of the temperature dependence, thereby leading to comparable power factor values in the temperature range from 300 to 800 K. All RFe_(4)Sb_(12) samples possess low lattice thermal conductivity. The correlation between the lattice thermal resistivity WL and ionic radii of the fillers is discussed and a good relationship of W_L ~ (r_(cage)−r_(ion))^3 is observed in lanthanide metal filled skutterudites. CeFe_(4)Sb_(12), PrFe_(4)Sb_(12), and NdFe_(4)Sb_(12) show the highest thermoelectric figure of merit around 0.87 at 750 K among all the filled skutterudites studied in this work.
Additional Information
© 2011 American Institute of Physics. Received 15 November 2010; accepted 5 January 2011; published online 23 March 2011. This work was partly supported by National Natural Science Foundation of China (Nos. 50802109, 50820145203, 50825205), and the Visiting Professor and Knowledge Innovation Programs of the Chinese Academy of Sciences (Contract No. KJCX2-YW-H20).Attached Files
Published - Qiu2011p13552J_Appl_Phys.pdf
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Additional details
- Eprint ID
- 23467
- Resolver ID
- CaltechAUTHORS:20110426-104923243
- National Natural Science Foundation of China
- 50802109
- National Natural Science Foundation of China
- 50820145203
- National Natural Science Foundation of China
- 50825205
- Chinese Academy of Sciences Visiting Professor and Knowledge Innovation Program
- KJCX2-YW-H20
- Created
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2011-04-26Created from EPrint's datestamp field
- Updated
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2021-11-09Created from EPrint's last_modified field