Facile precipitation of two phase alloys in SnTe sub(0.75)Se sub(0.25) with improved power factor

Multiphase thermoelectric (TE) materials have received great interest in recent years due to the synergistic improvements in TE properties. We report for the first time on melt spun samples with nominal composition of SnTe sub(0.75)Se sub(0.25). Interestingly, an orthorhombic second phase was observ...

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Veröffentlicht in:Journal of alloys and compounds 2014-02, Vol.587, p.420-427
Hauptverfasser: Tan, Li Ping, Sun, Ting, Fan, Shufen, Ramanujan, Raju V, Hng, Huey Hoon
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Sprache:eng
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Zusammenfassung:Multiphase thermoelectric (TE) materials have received great interest in recent years due to the synergistic improvements in TE properties. We report for the first time on melt spun samples with nominal composition of SnTe sub(0.75)Se sub(0.25). Interestingly, an orthorhombic second phase was observed to exhibit change in microstructure under low applied pressure - the metastable nature leads to an observed increase in mass fraction with increased applied pressure - and this second phase can be stabilized by concurrent application of heat and pressure during hot pressing. The second phase reduces electrical resistivity, while increasing Seebeck coefficient values slightly, especially at higher temperatures. A peak power factor of 1.3 mW/m K super(2) is obtained at 494 K, which is a 1.5 times enhancement over the peak power factor of pure SnTe. The peak ZT achieved for the alloy is 0.19 at 548 K, which is three times that of pure SnTe.
ISSN:0925-8388
DOI:10.1016/j.jallcom.2013.10.217