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新型半金属的热电性质:以YbMnSb为例

Thermoelectric Properties of Novel Semimetals: A Case Study of YbMnSb.

作者信息

Pan Yu, Fan Feng-Ren, Hong Xiaochen, He Bin, Le Congcong, Schnelle Walter, He Yangkun, Imasato Kazuki, Borrmann Horst, Hess Christian, Büchner Bernd, Sun Yan, Fu Chenguang, Snyder G Jeffrey, Felser Claudia

机构信息

Department of Solid State Chemistry, Max Planck Institute for Chemical Physics of Solids, Dresden, 01187, Germany.

Leibniz-Institute for Solid State and Materials Research (IFW-Dresden), Helmholtzstraße 20, Dresden, 01069, Germany.

出版信息

Adv Mater. 2021 Feb;33(7):e2003168. doi: 10.1002/adma.202003168. Epub 2020 Dec 9.

Abstract

The emerging class of topological materials provides a platform to engineer exotic electronic structures for a variety of applications. As complex band structures and Fermi surfaces can directly benefit thermoelectric performance it is important to identify the role of featured topological bands in thermoelectrics particularly when there are coexisting classic regular bands. In this work, the contribution of Dirac bands to thermoelectric performance and their ability to concurrently achieve large thermopower and low resistivity in novel semimetals is investigated. By examining the YbMnSb nodal line semimetal as an example, the Dirac bands appear to provide a low resistivity along the direction in which they are highly dispersive. Moreover, because of the regular-band-provided density of states, a large Seebeck coefficient over 160 µV K at 300 K is achieved in both directions, which is very high for a semimetal with high carrier concentration. The combined highly dispersive Dirac and regular bands lead to ten times increase in power factor, reaching a value of 2.1 mW m K at 300 K. The present work highlights the potential of such novel semimetals for unusual electronic transport properties and guides strategies towards high thermoelectric performance.

摘要

新兴的拓扑材料类别为设计用于各种应用的奇异电子结构提供了一个平台。由于复杂的能带结构和费米面可直接有益于热电性能,因此确定特色拓扑能带在热电学中的作用非常重要,特别是当存在共存的经典常规能带时。在这项工作中,研究了狄拉克能带对热电性能的贡献以及它们在新型半金属中同时实现大热功率和低电阻率的能力。以YbMnSb节线半金属为例进行研究,狄拉克能带似乎在其高度色散的方向上提供了低电阻率。此外,由于常规能带提供的态密度,在300 K时两个方向上的塞贝克系数均超过160 μV K,对于具有高载流子浓度的半金属来说这是非常高的。高度色散的狄拉克能带和常规能带相结合,使功率因数提高了十倍,在300 K时达到2.1 mW m K 的值。本工作突出了此类新型半金属在异常电子输运性质方面的潜力,并为实现高热电性能指明了策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f158/12121705/4cd5a922a9cc/ADMA-33-2003168-g005.jpg

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