Enhanced thermoelectric performance in Mg3+xSb1.5Bi0.49Te0.01via engineering microstructure through melt-centrifugation. Issue 3 (4th January 2021)
- Record Type:
- Journal Article
- Title:
- Enhanced thermoelectric performance in Mg3+xSb1.5Bi0.49Te0.01via engineering microstructure through melt-centrifugation. Issue 3 (4th January 2021)
- Main Title:
- Enhanced thermoelectric performance in Mg3+xSb1.5Bi0.49Te0.01via engineering microstructure through melt-centrifugation
- Authors:
- Ozen, Melis
Yahyaoglu, Mujde
Candolfi, Christophe
Veremchuk, Igor
Kaiser, Felix
Burkhardt, Ulrich
Snyder, G. Jeffrey
Grin, Yuri
Aydemir, Umut - Abstract:
- Abstract : By applying the melt-centrifugation, porosity and dislocations are introduced in the microstructure of the n-type Zintl phase Mg3+ x Sb1.5 Bi0.49 Te0.01 leading to significantly low κ l (∼ 0.33 W m −1 K −1 at 723 K) and enhanced zT (∼ 1.64 at 723 K). Abstract : N-type Zintl phases with earth-abundant and non-toxic constituent elements have attracted intense research interest thanks to their high thermoelectric efficiencies in the mid-temperature range, exemplified by the recently discovered Mg3 Sb2 material. In this study, the liquid phase is expelled from the microstructure of the optimized n-type phase Mg3+ x Sb1.5 Bi0.49 Te0.01 by applying a melt-centrifugation technique leading to the formation of lattice dislocations, grain boundary dislocations and increasing porosity. Additional phonon scattering mechanisms were introduced in the microstructure through this manufacturing method, resulting in a significant 50% reduction in the total thermal conductivity from ∼1 W m −1 K −1 to ∼0.5 W m −1 K −1 at 723 K. Combined with high power factors, this reduced heat transport leads to a dimensionless thermoelectric figure of merit, zT, value of ∼1.64 at 723 K, 43% higher than the value obtained in untreated Mg3+ x Sb1.5 Bi0.49 Te0.01 ( zT ∼ 1.14 at 723 K). This peak zT value yields a predicted device ZT of 0.95, and a promising theoretical thermoelectric efficiency of about 12%. These results further underline the great potential of the lightweight Mg3 Sb2 material forAbstract : By applying the melt-centrifugation, porosity and dislocations are introduced in the microstructure of the n-type Zintl phase Mg3+ x Sb1.5 Bi0.49 Te0.01 leading to significantly low κ l (∼ 0.33 W m −1 K −1 at 723 K) and enhanced zT (∼ 1.64 at 723 K). Abstract : N-type Zintl phases with earth-abundant and non-toxic constituent elements have attracted intense research interest thanks to their high thermoelectric efficiencies in the mid-temperature range, exemplified by the recently discovered Mg3 Sb2 material. In this study, the liquid phase is expelled from the microstructure of the optimized n-type phase Mg3+ x Sb1.5 Bi0.49 Te0.01 by applying a melt-centrifugation technique leading to the formation of lattice dislocations, grain boundary dislocations and increasing porosity. Additional phonon scattering mechanisms were introduced in the microstructure through this manufacturing method, resulting in a significant 50% reduction in the total thermal conductivity from ∼1 W m −1 K −1 to ∼0.5 W m −1 K −1 at 723 K. Combined with high power factors, this reduced heat transport leads to a dimensionless thermoelectric figure of merit, zT, value of ∼1.64 at 723 K, 43% higher than the value obtained in untreated Mg3+ x Sb1.5 Bi0.49 Te0.01 ( zT ∼ 1.14 at 723 K). This peak zT value yields a predicted device ZT of 0.95, and a promising theoretical thermoelectric efficiency of about 12%. These results further underline the great potential of the lightweight Mg3 Sb2 material for mid-temperature energy harvesting via thermoelectric effects. … (more)
- Is Part Of:
- Journal of materials chemistry. Volume 9:Issue 3(2021)
- Journal:
- Journal of materials chemistry
- Issue:
- Volume 9:Issue 3(2021)
- Issue Display:
- Volume 9, Issue 3 (2021)
- Year:
- 2021
- Volume:
- 9
- Issue:
- 3
- Issue Sort Value:
- 2021-0009-0003-0000
- Page Start:
- 1733
- Page End:
- 1742
- Publication Date:
- 2021-01-04
- Subjects:
- Materials -- Research -- Periodicals
Chemistry, Analytic -- Periodicals
Environmental sciences -- Research -- Periodicals
543.0284 - Journal URLs:
- http://pubs.rsc.org/en/journals/journalissues/ta ↗
http://www.rsc.org/ ↗ - DOI:
- 10.1039/d0ta09993g ↗
- Languages:
- English
- ISSNs:
- 2050-7488
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 5012.205100
British Library DSC - BLDSS-3PM
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