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Semiconducting Heusler Compounds beyond the Slater-Pauling Rule
- Source :
- PRX Energy, Vol 3, Iss 3, p 033006 (2024)
- Publication Year :
- 2024
- Publisher :
- American Physical Society, 2024.
-
Abstract
- Heusler compounds with semiconducting properties represent an important class of functional materials. Usually, research on these systems is guided by simple electron-counting rules, such as the Slater-Pauling principle. Here, we report on the discovery of Heusler-type semiconductors, significantly deviating from the Slater-Pauling rule. We theoretically predict the occurrence of nonmagnetic semiconducting ground states in various highly off-stoichiometric full-Heusler alloys, where self-substitution leads to a band-gap opening. This unexpected trend is confirmed experimentally by thermoelectric transport measurements on a multitude of Fe_{2−2x}V_{1−x}Al_{1+3x} samples with up to 20% substitution of Fe and V atoms. The band-gap opening leads to an exceptionally large Seebeck coefficient in p-type Fe_{2}VAl thermoelectrics, previously limited by bipolar conduction and low-density-of-states effective mass. Consequently, our work presents a paradigm to tune the band gap of Heusler compounds by self-substitution and introduces a hitherto unexplored class of semiconductors with exceptional thermoelectric properties, offering significant potential for advancements in energy science and sustainable-energy technologies.
Details
- Language :
- English
- ISSN :
- 27685608
- Volume :
- 3
- Issue :
- 3
- Database :
- Directory of Open Access Journals
- Journal :
- PRX Energy
- Publication Type :
- Academic Journal
- Accession number :
- edsdoj.0e4f7a194309bacd8ac662b9b81d
- Document Type :
- article
- Full Text :
- https://doi.org/10.1103/PRXEnergy.3.033006