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液相热变形增强n型碲化铋基固溶体的热电性能

Liquid-Phase Hot Deformation to Enhance Thermoelectric Performance of n-type Bismuth-Telluride-Based Solid Solutions.

作者信息

Wu Yehao, Yu Yuan, Zhang Qi, Zhu Tiejun, Zhai Renshuang, Zhao Xinbing

机构信息

State Key Laboratory of Silicon Materials and School of Materials Science and Engineering Zhejiang University Hangzhou 310027 China.

I. Physikalisches Institut (IA) RWTH Aachen University 52074 Aachen Germany.

出版信息

Adv Sci (Weinh). 2019 Sep 14;6(21):1901702. doi: 10.1002/advs.201901702. eCollection 2019 Nov 6.

Abstract

Bismuth-telluride-based solid solutions are the best commercial thermoelectric materials near room temperature. For their n-type polycrystalline compounds, the maximum figures of merit (s) are often less than 1.0 due to the degraded carrier mobility resulting from the loss of texture. Herein, a liquid-phase hot deformation procedure, during which the Bi(Te,Se) ingots are directly hot deformed with the extrusion of liquid eutectic phase, is performed to enhance the thermoelectric performance of n-type Bi(Te,Se) alloys. The deformation-induced dynamic recrystallization is remarkably suppressed due to the reduction of nucleation sites and the release of deformation stress by liquid phase, contributing to a weakened carrier scattering and enhanced carrier mobility. The liquid eutectic phase also facilitates the rotation of grains and enhanced (000) texture, further improving carrier mobility. In addition, the dense dislocations and lattice distortion introduced into the matrix reduce the lattice thermal conductivity. As a result, a high value of 1.1 at 400 K is obtained, about 75% increment over the normal one-step hot deformed alloys. This work not only demonstrates a simple and efficient technique for achieving superior n-type BiTe-based materials, but also elucidates the important role of liquid eutectic phase in hot deformation.

摘要

碲化铋基固溶体是室温附近最佳的商用热电材料。对于其n型多晶化合物,由于织构丧失导致载流子迁移率降低,其最大优值(s)通常小于1.0。在此,进行了一种液相热变形工艺,在此过程中,Bi(Te,Se)铸锭通过液态共晶相的挤压直接进行热变形,以提高n型Bi(Te,Se)合金的热电性能。由于形核位置的减少和液相释放的变形应力,变形诱导的动态再结晶受到显著抑制,这有助于减弱载流子散射并提高载流子迁移率。液态共晶相还促进了晶粒的旋转并增强了(000)织构,进一步提高了载流子迁移率。此外,引入基体中的密集位错和晶格畸变降低了晶格热导率。结果,在400 K时获得了1.1的高值,比常规的一步热变形合金提高了约75%。这项工作不仅展示了一种实现优异n型BiTe基材料的简单有效技术,还阐明了液态共晶相在热变形中的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/015f/6839625/4473beaea4a7/ADVS-6-1901702-g001.jpg

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