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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >n-Type thermoelectric properties of a hexagonal SiGe polymorph superior to a cubic SiGe
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n-Type thermoelectric properties of a hexagonal SiGe polymorph superior to a cubic SiGe

机译:n型热电性能的六角形SiGe多晶型以高于立方SiGe

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摘要

The crystal structure of a material dictates many of its properties. This study focuses on a SiGe compound with a hexagonal crystal system that demonstrates superior thermoelectric properties than that of its conventional cubic polymorph. Using first-principles density functional theory (DFT) calculations combined with the semi-classical Boltzmann transport equation (BTE), we clearly elucidate the underlying mechan-isms that cause the enhanced thermoelectric performance. The hexagonal SiGe compound shows different folding behavior of the electronic band structure, leading to dissimilar density of states and enhanced Seebeck coefficient, compared to the cubic counterpart. Moreover, the phonon vibrational modes of the hexagonal SiGe shorten the phonon lifetime due to the different lattice symmetry. Based on the results, we propose hexagonal SiGe as a promising material for a highly active n-type thermoelectric material with a figure of merit that is twice of its cubic analogue. Our approach demonstrates an attractive method for substantially enhancing conventional material properties without a complicated or expensive process for developing a novel material.
机译:一种材料的晶体结构决定了它的许多特性。本研究的重点是一种具有六方晶系的SiGe化合物,其热电性能优于传统的立方晶型。利用第一性原理密度泛函理论(DFT)计算结合半经典玻尔兹曼输运方程(BTE),我们清楚地阐明了导致热电性能增强的潜在机制。与立方SiGe化合物相比,六方SiGe化合物显示出不同的电子能带结构折叠行为,导致不同的态密度和增强的Seebeck系数。此外,由于晶格对称性的不同,六方SiGe的声子振动模式缩短了声子寿命。基于这些结果,我们提出六方SiGe是一种很有前途的高活性n型热电材料,其优值是立方类似物的两倍。我们的方法展示了一种有吸引力的方法,可以显著提高传统材料的性能,而无需复杂或昂贵的开发新材料的过程。

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