Differential Thermal Analysis of Nanostructured Si0.80Ge0.20 Thermoelectric Material

Thermoelectric effect becomes one of the important elements in sustainable energy due to its capability in green conversion of waste heat into electrical energy. Among various thermoelectric materials, nanostructured-Si 0.80 Ge 0.20 is being widely investigated owing to its efficient thermoelectric...

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Hauptverfasser: Tayebi, L., Zamanipour, Z., Mozafari, M., Norouzzadeh, P., Ede, K. F., Krasinski, J. S., Vashaee, D.
Format: Tagungsbericht
Sprache:eng
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Zusammenfassung:Thermoelectric effect becomes one of the important elements in sustainable energy due to its capability in green conversion of waste heat into electrical energy. Among various thermoelectric materials, nanostructured-Si 0.80 Ge 0.20 is being widely investigated owing to its efficient thermoelectric effect at high temperature. In this manuscript, we studied differential thermal analysis (DTA) of Si 0.80 Ge 0.20 thermoelectric alloy in detail. Our DTA study revealed the fact that in almost all alloys of nanostrcutured Si 0.80 Ge 0.20 prepared with mechanical ball milling, the sample is not in Si0.80Ge 0.20 phase but is in composite mixed phases of Si 0.88 Ge 0.12 and small amount of Si 0.55 Ge 0.45 . This phase impurity can hardly be seen in X-ray diffraction patterns and is often neglected.
ISSN:2166-546X
2166-5478
DOI:10.1109/GREEN.2012.6200977