中高温应用纳米结构热电材料的现状

W. Nam, W. Shin, J. Cho, W. Seo
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引用次数: 1

摘要

热电能量转换由于可以直接通过固态器件将热能转化为电能而备受关注。目前的研究目标是通过提高功率因数和降低导热系数来提高热电优值。虽然在过去的几十年里,在增加由Bi、Te、Ge、Pb等组成的材料体系的ZT方面取得了重大进展,但它们相对较高的成本、毒性和稀缺性阻碍了热电材料进一步发展以扩大实际应用。本文综述了中高温纳米结构热电材料的研究现状,并重点介绍了提高热电性能的策略。
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Current Status of Nanostructured Thermoelectric Materials for Mid-High Temperature Applications
s Thermoelectric energy conversion has attracted much attention because it can convert heat into electric power directly through solid state device and vice versa. Current research is aimed at increasing the thermoelectric figure of merit (ZT ) by improving the power factor and reducing the thermal conductivity. Although there have been significant progresses in increasing ZT of material systems composed of Bi, Te, Ge, Pb, and etc. over the last few decades, their relatively high cost, toxicity, and the scarcity have hindered further development of thermoelectrics to expand practical applications. In this paper, we review the current status of research in the fields of nanostructured thermoelectric materials with eco-friendly and low cost elements, such as skutterudites and oxides, for mid-high temperature applications, highlighting the strategies to improve thermoelectric performance.
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