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巨大压力诱导增强碲化锡中的塞贝克系数和热电效率。

Giant Pressure-Induced Enhancement of Seebeck Coefficient and Thermoelectric Efficiency in SnTe.

作者信息

Baker Jason, Kumar Ravhi, Park Changyong, Kenney-Benson Curtis, Cornelius Andrew, Velisavljevic Nenad

机构信息

HiPSEC and Department of Physics and Astronomy, University of Nevada, Las Vegas (UNLV), 4505 S. Maryland Parkway, Las Vegas, NV, 89154, USA.

(HPCAT) Geophysical Laboratory, Carnegie Institution of Washington, 9700 S. Cass Avenue, Argonne, IL, 60439, USA.

出版信息

Chemphyschem. 2017 Dec 6;18(23):3315-3319. doi: 10.1002/cphc.201700994. Epub 2017 Oct 30.

Abstract

The thermoelectric properties of polycrystalline SnTe have been measured up to 4.5 GPa at 330 K. SnTe shows an enormous enhancement in Seebeck coefficient, greater than 200 % after 3 GPa, which correlates to a known pressure-induced structural phase transition that is observed through simultaneous in situ X-ray diffraction measurement. Electrical resistance and relative changes to the thermal conductivity were also measured, enabling the determination of relative changes in the dimensionless figure of merit (ZT), which increases dramatically after 3 GPa, reaching 350 % of the lowest pressure ZT value. The results demonstrate a fundamental relationship between structure and thermoelectric behaviours and suggest that pressure is an effective tool to control them.

摘要

多晶SnTe的热电性质在330K下已测量至4.5 GPa。SnTe的塞贝克系数大幅增强,在3 GPa后大于200%,这与通过同步原位X射线衍射测量观察到的已知压力诱导结构相变相关。还测量了电阻和热导率的相对变化,从而能够确定无量纲品质因数(ZT)的相对变化,其在3 GPa后急剧增加,达到最低压力下ZT值的350%。结果表明了结构与热电行为之间的基本关系,并表明压力是控制它们的有效工具。

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