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A review on recent developments of thermoelectric materials for room-temperature applications

机译:室温应用热电材料的最新发展综述

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Wearable thermoelectric generators (TEGs) emerge as a viable renewable energy source, which directly convert the heat dissipated from human skin into electricity. Extensive reviews have been conducted on the efficiency of thermoelectric materials (TE) as the dominant element of TEGs. TE materials are categorised as inorganic, organic, and hybrid. Each of these reviews focused on either a specific type of TE materials, or on a certain specification (i.e. flexibility) of them. However, less attention has been paid to comprehensively review all these types without taking into account a certain specification. Therefore, the purpose of this paper is to summarize the progress and current state-of-the-art research on the three types of TE materials respecting their TE properties and efficiency at 300 K, which is the operating temperature of wearable TEGs. Concerning the inorganic TE materials, the results show that Bi0.4-xSb1.6+xTe3 and Bi2Te2.7Se0.3 are the most optimal TE materials, which exhibit the greatest efficiencies at room temperature. In addition, it is remarkably more efficient to replace polymer based TE composites with carbon based TE composites in the organic and the hybrid types. In total, this comprehensive review paves the way for researchers to find out the most suitable TE materials at room temperatures.
机译:穿戴式热电发电机(TEG)成为一种可行的可再生能源,可将人体皮肤散发的热量直接转化为电能。关于热电材料(TE)作为TEG的主要元素的效率已进行了广泛的审查。 TE材料分为无机,有机和混合材料。这些评论中的每一个都聚焦于特定类型的TE材料或它们的特定规格(即灵活性)。但是,在不考虑特定规范的情况下,对所有这些类型进行全面审查的关注较少。因此,本文的目的是就三种类型的TE材料在300 K(即可穿戴TEG的工作温度)下的TE特性和效率方面进行总结和最新研究。关于无机TE材料,结果表明Bi0.4-xSb1.6 + xTe3和Bi2Te2.7Se0.3是最佳的TE材料,在室温下表现出最大的效率。另外,在有机和杂化类型中用碳基TE复合材料代替聚合物基TE复合材料非常有效。总而言之,这项全面的综述为研究人员在室温下找到最合适的TE材料铺平了道路。

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