Thermoelectric properties and magnetoelectric coupling in dually doped Cu2Sn1−2xZnxFexS3

Thermoelectric properties of Cu 2 Sn 1−2 x Zn x Fe x S 3 ( x  = 0–0.1) doped with Zn and Fe as acceptor at Sn-site were investigated. With increased doping, the primary phase was observed to change from cation-ordered monoclinic phase to cation-disordered cubic and tetragonal phases. Favored by the...

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Veröffentlicht in:Journal of materials science. Materials in electronics 2020-07, Vol.31 (14), p.11801-11809
Hauptverfasser: Xing, Wanli, Zhao, Zicheng, Pan, Lin, Chen, Changchun, Li, Dongxu, Wang, Yifeng
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Sprache:eng
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Zusammenfassung:Thermoelectric properties of Cu 2 Sn 1−2 x Zn x Fe x S 3 ( x  = 0–0.1) doped with Zn and Fe as acceptor at Sn-site were investigated. With increased doping, the primary phase was observed to change from cation-ordered monoclinic phase to cation-disordered cubic and tetragonal phases. Favored by the growth of carrier concentration, and as well the enhanced DOS effective mass caused by Fe-doping, an optimal power factor ~ 12 μWcm −1  K −2 was obtained with x  = 0.1 at 773 K. Meanwhile, the lattice thermal conductivity in the dual-doped samples was found to be further lower than that in the singly doped counterparts due to cations disordering and bond softening. These led to a maximal dimensionless figure of merit, ZT  ~ 0.7 ( x  = 0.05), synergistically. Moreover, the magnetoelectronic coupling induced by Fe was observed to influence the carrier concentration sensitively, while little affecting the carrier’s mobility and effective mass.
ISSN:0957-4522
1573-482X
DOI:10.1007/s10854-020-03732-w