<div class="csl-bib-body">
<div class="csl-entry">Parzer, M., Garmroudi, F., Riss, A., Khmelevskyi, S., Mori, T., & Bauer, E. (2022). High solubility of Al and enhanced thermoelectric performance due to resonant states in Fe2VAlx. <i>Applied Physics Letters</i>, <i>120</i>(7), 071901. https://doi.org/10.1063/5.0077159</div>
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dc.identifier.issn
0003-6951
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/139914
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dc.description.abstract
Recently, n-type Fe2VAl-based full-Heusler systems, exhibiting high thermoelectric power factors, have sparked new interest in this material class for thermoelectric applications. In this paper, the aluminum-rich region of the L21 phasespace in Fe-V-Al is explored by a step-by-step increase in the Al content in Fe2VAlx. We reveal a promising route to improve the thermoelectric properties of p-type Heusler alloys. First, we find an ultrahigh solubility of Al in Fe2VAlx and confirm the presence of a single Heusler phase up to x = 2 using x-ray diffraction analysis and scanning electron microscopy. Second, thermoelectric transport properties, measured in a wide temperature range from 4 to 800 K, show a substantial increase in the thermopower by over 100% and a significant decrease in the thermal conductivity by up to 80% for the Al-rich samples. Detailed analysis of the carrier-concentration-dependent thermopower as well as Hall measurements indicate the formation of a resonant state at the valence band edge as a likely origin for this enhancement. This is further corroborated by density-functional-theory calculations of the electronic density of states. Our work sets the stage for p-type full-Heusler materials with enhanced thermoelectric performance, applying the principle of resonant states to this material class.
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dc.language.iso
en
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dc.publisher
AIP PUBLISHING
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dc.relation.ispartof
Applied Physics Letters
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dc.subject
Thermoelectricity
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dc.subject
Heusler compounds
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dc.subject
Transport properties
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dc.subject
Electronic band structure
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dc.title
High solubility of Al and enhanced thermoelectric performance due to resonant states in Fe2VAlx