First-principles study of electronic structure and thermoelectric properties for guest substituted clathrate compounds Ba6R 2Au6Ge40 (R = Eu or Yb)

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Abstract

The electronic structure and thermoelectric properties of guest substituted clathrate compounds Ba6R2Au6Ge40 (R = Eu, Yb) are calculated using the full-potential linearized augmented plane wave method based on the density functional theory. The bottom of conduction band for Ba8Au6Ge40 is formed by one relativity dispersive band close to the M point. When the Ba 2a site is replaced by Eu and Yb, the lowest conduction bands at X point shift to lower energy side. The coupling between gusest atom at 2a sites and the host framework becomes weaker with decreasing ionic radii. This multivalley effect in M and X points yields the increase in the density of states near the conduction band edge, resulting in the increase in the Seebeck coefficient for n-type doping. On the other hand, the valence band edge is almost independent of the guests; the f-bands of Eu and Yb are narrow and distant from the band edge. The effect of Eu and Yb substitution on the Seebeck coefficient is small for p-type doping at higher temperature. © 2007 The Thermoelectrics Society of Japan.

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Koga, K., Anno, H., Akai, K., Matsuura, M., & Matsubara, K. (2007). First-principles study of electronic structure and thermoelectric properties for guest substituted clathrate compounds Ba6R 2Au6Ge40 (R = Eu or Yb). Materials Transactions, 48(8), 2108–2113. https://doi.org/10.2320/matertrans.E-MRA2007865

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