Electron transport properties of thermoelectrics based on layered substituted transition metal dichalcogenides

Temperature dependences of the electrical conductivity are studied in the range 4.2’300 K and Seebeck coefficient at room temperature of bulk samples of tungsten dichalcogenide polycrystals with niobium substitutions for tungsten and selenium substitutions for sulfur – W 1– x Nb x (S 1– y Se y ) 2 ....

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Veröffentlicht in:Journal of structural chemistry 2017-09, Vol.58 (5), p.893-900
Hauptverfasser: Romanenko, A. I., Yakovleva, G. E., Fedorov, V. E., Ledneva, A. Yu, Kuznetsov, V. A., Sotnikov, A. V., Tsygankova, A. R., Kuchumov, B. M.
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Sprache:eng
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Zusammenfassung:Temperature dependences of the electrical conductivity are studied in the range 4.2’300 K and Seebeck coefficient at room temperature of bulk samples of tungsten dichalcogenide polycrystals with niobium substitutions for tungsten and selenium substitutions for sulfur – W 1– x Nb x (S 1– y Se y ) 2 . The two-dimensionalization of electron transport properties is detected at niobium concentrations x ≥ 0.1 in W 1– x Nb x S 2 and x ≥ 0.05 in W 1– x Nb x Se 2 . In samples with additional partial selenium substitution for sulfur the electron transport remains three-dimensional. At room temperature the Seebeck coefficient (at equal electrical conductivities) is several times higher in the samples with quasi-two-dimensional transport than in the samples with three-dimensional transport. The calculation of the power factor at room temperature shows its nine times increase.
ISSN:0022-4766
1573-8779
DOI:10.1134/S0022476617050067