High-entropy materials for thermoelectric applications: towards performance and reliability

材料科学 热电效应 可靠性(半导体) 纳米技术 可靠性工程 工程物理 热力学 工程类 物理 功率(物理)
作者
Nouredine Oueldna,Noha Sabi,Hasna Aziam,Vera Trabadelo,Hicham Ben Youcef
出处
期刊:Materials horizons [Royal Society of Chemistry]
卷期号:11 (10): 2323-2354 被引量:23
标识
DOI:10.1039/d3mh02181e
摘要

High-entropy materials (HEMs), including alloys, ceramics and other entropy-stabilized compounds, have attracted considerable attention in different application fields. This is due to their intrinsically unique concept and properties, such as innovative chemical composition, structural characteristics, and correspondingly improved functional properties. By establishing an environment with different chemical compositions, HEMs as novel materials possessing superior attributes present unparalleled prospects when compared with their conventional counterparts. Notably, great attention has been paid to investigating HEMs such as thermoelectrics (TE), especially for application in energy-related fields. In this review, we started with the basic definitions of TE fundamentals, the existing thermoelectric materials (TEMs), and the strategies adopted for their improvement. Moreover, we introduced HEMs, summarized the core effects of high-entropy (HE), and emphasized how HE will open up new avenues for designing high-entropy thermoelectric materials (HETEMs) with promising performance and high reliability. Through selecting and analyzing recent scientific publications, this review outlines recent scientific breakthroughs and the associated challenges in the field of HEMs for TE applications. Finally, we classified the different types of HETEMs based on their structure and properties and discussed recent advances in the literature.
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