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High entropy strategy on thermoelectric materials

Authors :
Dong, Jinfeng
Gao, Jing
Yan, Qingyu
School of Materials Science and Engineering
Institute of Materials Research and Engineering, A*STAR
Publication Year :
2023

Abstract

High-entropy materials, which consist of multiple elements occupying a single sublattice in a disordered manner, have emerged as innovative material systems with various promising applications. Many macroscopic physical properties, such as electrical transport and thermal transport, are closely related to the periodic distribution of atoms. In high-entropy compounds, the long-range periodic arrangement of atoms is broken down by the disordered distribution of various elements, which would lead to changes in physical properties. Therefore, the high-entropy idea will open new avenues for designing these functional materials with promising performance and high reliability. This perspective focuses on the high-entropy strategies of thermoelectric materials, discussing how high entropy will alter their properties. The possible routes of designing high-entropy high-performance thermoelectric materials are prospected, which can also provide enlightenment for the development of high-entropy systems in other research fields. Agency for Science, Technology and Research (A*STAR) Ministry of Education (MOE) Published version This work is supported by MOE ACRF Tier 1 RG128/21 and Singapore A*STAR project A19D9a0096.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....8bfed4174d1c2de7aeb9efdaad06b723