High figure-of-merit and power generation in high-entropy GeTe-based thermoelectrics

Author:

Jiang Binbin12ORCID,Wang Wu1,Liu Shixuan1,Wang Yan1ORCID,Wang Chaofan1,Chen Yani1,Xie Lin1,Huang Mingyuan1,He Jiaqing13ORCID

Affiliation:

1. Shenzhen Key Laboratory of Thermoelectric Materials, Department of Physics, Southern University of Science and Technology, Shenzhen 518055, China.

2. School of Materials and Energy, University of Electronic Science and Technology of China, Chengdu 610054, China.

3. Guangdong-Hong Kong-Macao Joint Laboratory for Photonic-Thermal-Electrical Energy Materials and Devices, Southern University of Science and Technology, Shenzhen 518055, China.

Abstract

The high-entropy concept provides extended, optimized space of a composition, resulting in unusual transport phenomena and excellent thermoelectric performance. By tuning electron and phonon localization, we enhanced the figure-of-merit value to 2.7 at 750 kelvin in germanium telluride–based high-entropy materials and realized a high experimental conversion efficiency of 13.3% at a temperature difference of 506 kelvin with the fabricated segmented module. By increasing the entropy, the increased crystal symmetry delocalized the distribution of electrons in the distorted rhombohedral structure, resulting in band convergence and improved electrical properties. By contrast, the localized phonons from the entropy-induced disorder dampened the propagation of transverse phonons, which was the origin of the increased anharmonicity and largely depressed lattice thermal conductivity. We provide a paradigm for tuning electron and phonon localization by entropy manipulation, but we have also demonstrated a route for improving the performance of high-entropy thermoelectric materials.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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