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Publication
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| Title of Article |
Enhancing thermoelectric properties of higher manganese silicide (HMS) by partial Ta substitution |
| Date of Acceptance |
4 October 2019 |
| Journal |
| Title of Journal |
Journal of Electronic Materials |
| Standard |
SCOPUS |
| Institute of Journal |
Springer US |
| ISBN/ISSN |
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| Volume |
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| Issue |
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| Month |
October |
| Year of Publication |
2019 |
| Page |
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| Abstract |
In this work, the thermoelectric properties of the p-type higher manganese silicide (HMS) were enhanced by partially substituting Mn with Ta. The in- gots of the compound Mn36.4xTaxSi63.6, where x = 0.00, 0.25, 0.50. 0.75 and 1.00, were synthesized via arc melting which were then cast into a ribbon shape by a melt spinning process. After that, the crushed ribbons were con- solidated to form a bulk sample by spark plasma sintering. The x-ray diffraction analysis showed that the single phase of HMS existed for x up to 0.50. Above that, the evidence of secondary phases was found, confirmed by scanning electron microscope imaging with elemental mapping. For thermo- electric properties measurement, the Seebeck coefficient and electrical con- ductivity were insignificantly different in the pure-phase samples. On the other hand, the samples with secondary phases showed increased electrical conductivities but slightly decreased Seebeck coefficients. The thermal con- ductivity was suppressed in all Ta-substituted samples. The lowest lattice thermal conductivity was found in the sample with the impurity phase (TaSi2) due to the enhanced phonon scattering. Consequently, the ZT of the Ta-sub- stituted HMS was enhanced with the peak ZT of 0.37 at 813 K, which is about 28% higher than that of the pristine HMS. |
| Keyword |
Thermoelectric, higher manganese silicide, Ta doping, melt spinning, spark plasma sintering |
| Author |
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| Reviewing Status |
มีผู้ประเมินอิสระ |
| Status |
ตีพิมพ์แล้ว |
| Level of Publication |
นานาชาติ |
| citation |
false |
| Part of thesis |
true |
| ใช้สำหรับสำเร็จการศึกษา |
ไม่เป็น |
| Attach file |
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| Citation |
0
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