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Composition and the thermoelectric performance of beta-Zn4Sb3

  作者 TOBERER ERIC S; RAUWEL PROTIMA; GARIEL SYLVAIN; TAFTO J; SNYDER G JEFFREY  
  选自 期刊  Journal of Materials Chemistry;  卷期  2010年20-44;  页码  9877-9885  
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[摘要]beta-Zn4Sb3 is a promising thermoelectric material due to the abundance of zinc and antimony and reports of high efficiency in bulk samples. This work establishes the high temperature properties of beta-Zn4Sb3 across the phase stability window. By controlling the stoichiometry, the Hall carrier concentration can be tuned from 6-9 x 10(19) cm(-3) without requiring extrinsic dopants. The trend in Seebeck coefficient on carrier concentration is rationalized with a single, parabolic band model. Extremely low lattice thermal conductivity (0.4-0.6 W m(-1) K-1) coupled with a moderate effective mass (1.2 m(e)) and mobility leads to a large figure of merit (zT of 0.8 by 550 K). The single parabolic band model is used to obtain the carrier concentration dependence of the figure of merit and an optimum carrier concentration near 5 x 10(19) cm(-3) is predicted.

 
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