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Pavonite homologues as potential n-type thermoelectric materials: crystal structure and performance

机译:作为潜在的n型Pavonite同系物热电材料:晶体结构和性能

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摘要

Themoelectric materials exhibit great potential in alleviating the energy shortage and environmental pollution. The development of homologous series is helpful for understanding the relationship between structure and properties, thereby providing new strategies for seeking high-performance thermoelectric materials. Among the various structure prototypes, pavonite is a rising star and has received increasing attention as a potential n-type thermoelectric material owing to their diverse structures and extremely low thermal conductivity. In this review, we summarized the structural characteristics of pavonite and introduced the relationship between structure and thermoelectric performance. The pavonite structure consists of two alternating slabs with separately tunable thicknesses, and has wide adaptability for elemental substitution. Specifically, the participation of heavy atoms in the pavonite structure results in large unit cell volume and Gru neisen parameters, and thus extremely low lattice thermal conductivity. Finally, we briefly discussed the potential of pavonite compounds in thermoelectric applications.
机译:Themoelectric材料表现出巨大的潜力缓解能源短缺和环境污染。有助于理解的关系之间的结构和性能,从而为寻求提供新的策略高性能热电材料。各种结构原型,pavonite是a冉冉升起的新星,受到越来越多的关注作为一个潜在的n型热电材料由于各自不同的结构和极端导热系数低。总结的结构特点pavonite和介绍了之间的关系结构和热电性能。pavonite结构包括两个交替与单独可调厚度板,适应性广的元素替换。具体来说,重原子参与在大型单位细胞pavonite结构的结果体积和格勒乌neisen参数,因此晶格热导率极低。最后,我们简要地讨论了的潜力pavonite化合物热电应用程序。

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