Corrugated flat band as an origin of large thermopower in hole doped PtSb2

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Abstract

The origin of the recently discovered large thermopower in hole-doped PtSb2 is theoretically analyzed based on a model constructed from first principles band calculation. It is found that the valence band dispersion has an overall flatness combined with some local ups and downs, which gives small Fermi surfaces scattered over the entire Brillouin zone. The Seebeck coefficient is calculated using this model, which gives good agreement with the experiment. We conclude that the good thermoelectric property originates from this "corrugated flat band", where the coexistence of large Seebeck coefficient and large electric conductivity is generally expected. © 2012 Copyright 2012 Author(s). This article is distributed under a Creative Commons Attribution 3.0 Unported License.

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Mori, K., Usui, H., Sakakibara, H., & Kuroki, K. (2012). Corrugated flat band as an origin of large thermopower in hole doped PtSb2. AIP Advances, 2(4). https://doi.org/10.1063/1.4759007

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