Advancements in thermoelectric materials: A comprehensive review

Syed Irfan , Zhiyuan Yan , Sadaf Bashir Khan
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Abstract

Due to their broad range of uses in thermo-electric devices, aerospace, and other industries, thermoelectric materials have garnered much attention. To expand the scope of their applications, thermoelectric materials’ thermoelectric characteristics must be effectively improved. Improved thermoelectrical properties with advancement is one of the critical strategies. Even though it is challenging to do small-scale measurements, it is crucial to precisely gauge the thermoelectric characteristics of varying materials (organic/inorganic/MXenes). Two-dimensional materials have drawn much interest for technological applications because of their unique properties. MXenes are a class of two-dimensional (2D) transition metal carbides, nitrides, and carbonitrides that have garnered significant attention for their promising properties by showing high electrical conductivity, controllable thermal conductivity, and high Seebeck coefficient value making suitable candidates for thermoelectric energy conversion. Thermal and electrical parameters are currently measured using a variety of techniques. However, the advanced thermoelectric properties with advanced thermoelectric materials, such as thermopower, thermal conductance, and electrical conductivity, are compiled in this review. Also outlined are measurement techniques for thermoelectric properties of selected advanced and 2D materials. Lastly, the challenges of integrated measurement methods are suggested, and a few integrated measurement solutions that work well with many inorganic/organic composites and two-dimensional materials MXenes are most proposed.

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热电材料的进步:全面回顾
由于热电材料在热电设备、航空航天和其他工业领域的广泛应用,热电材料备受关注。为了扩大其应用范围,必须有效改善热电材料的热电特性。提高热电特性的先进性是关键策略之一。尽管进行小规模测量具有挑战性,但精确测量不同材料(有机/无机/二甲苯)的热电特性至关重要。二维材料因其独特的性能而在技术应用中备受关注。MXenes 是一类二维(2D)过渡金属碳化物、氮化物和碳氮化物,因其具有高导电性、可控热导率和高塞贝克系数值等良好特性而备受关注,是热电能量转换的理想候选材料。目前,人们使用各种技术测量热参数和电参数。然而,本综述汇编了先进热电材料的先进热电特性,如热电功率、热导率和电导率。此外,还概述了某些先进材料和二维材料的热电性能测量技术。最后,提出了综合测量方法所面临的挑战,并提出了一些可与许多无机/有机复合材料和二维材料 MXenes 完美配合的综合测量解决方案。
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来源期刊
Materials Science for Energy Technologies
Materials Science for Energy Technologies Materials Science-Materials Science (miscellaneous)
CiteScore
16.50
自引率
0.00%
发文量
41
审稿时长
39 days
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