4.8 Article

Transport Properties of an Intermetallic with Pseudo-hollandite Structure as a Potential Thermoelectric Material: The Example of TlxCr5Se8

期刊

CHEMISTRY OF MATERIALS
卷 25, 期 9, 页码 1809-1815

出版社

AMER CHEMICAL SOC
DOI: 10.1021/cm400365q

关键词

hollandite; thermoelectric; chalcogenides; low thermal conductivity; selenides

资金

  1. FP7 European Initial Training Network SOPRANO [GA-2008-214040]
  2. IdsFunMat project

向作者/读者索取更多资源

The transport properties of TlxCr5Se8 pseudo-hollandite have been investigated, from 2 up to 800 K. A semiconducting behavior is observed from 200 down to 2 K, with a transition observed at T similar to 43 K, at the antiferromagnetic transition. Above 200 K, small values of p are obtained, close to 10 m Omega.cm at 800 K. The Seebeck coefficient continuously increases in this range of temperature, reaching 300 mu V/K at 800 K. Moreover, the thermal conductivity of this low dimensional structure is small, leading to a figure of merit ZT = (ST)-T-2/(rho kappa) = 0.5 at 800 K. All the electronic transport properties can be fitted by a standard Boltzmann equation, with a large scattering parameter (r = 3/2, characteristic of diffusion by ionized impurities). The combination of small thermal conductivity, large scattering parameter, and low concentration of carriers (4.5 x 10(19) cm(-3)) is at the origin of this large ZT.

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