Enhancement of the Thermoelectric Figure of Merit in the Dirac Semimetal CdAs by Band-Structure and -Filling Control
arXiv:2412.02207 · doi:10.1080/14686996.2024.2412971
Abstract
Topological materials attract a considerable research interest because of their characteristic band structure giving rise to various new phenomena in quantum physics. Beside this, they are tempting from a functional materials point of view: Topological materials bear potential for an enhanced thermoelectric efficiency because they possess the required ingredients, such as intermediate carrier concentrations, large mobilities, heavy elements etc. Against this background, this work reports an enhanced thermoelectric performance of the topological Dirac semimetal CdAs upon alloying the trivial semiconductor ZnAs. This allows to gain fine-tuned control over both the band filling and the band topology in CdZnAs. As a result, the thermoelectric figure of merit exceeds 0.5 around and at elevated temperatures. The former is due to an enhancement of the power factor, while the latter is a consequence of a strong suppression of the thermal conductivity. In addition, in terms of first-principle band structure calculations, the thermopower in this system is theoretically evaluated, which suggests that the topological aspects of the band structure change when traversing .
11 pages main text + 23 pages supplement
References in corpus (8)
- A topological Dirac insulator in a quantum spin Hall phase : Experimental observation of first strong topological insulator
- Topological insulators and thermoelectric materials
- Quantum Hall states observed in thin films of Dirac semimetal Cd3As2
- Large Enhancement of Thermoelectric Efficiency Due to a Pressure-Induced Lifshitz Transition in SnSe
- Enhanced Thermoelectric Properties of Dirac Semimetal Cd3As2
- Modification of electronic structure and thermoelectric properties of hole-doped tungsten dichalcogenides
- Ferromagnetic state above room temperature in a proximitized topological Dirac semimetal
- Doping-induced topological transition and enhancement of thermopower in the Dirac-semimetal system CdZnAs