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Nanostructuration of CoSi by mechanical milling and mechanical alloying

机译:机械研磨和机械合金化CoSi的纳米结构

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CoSi is an inexpensive thermoelectric material for medium temperature (200-500 degrees C). Its power factor is as large as the state of the art materials; however, its thermal conductivity is too large. Then, improving its thermoelectric performances implies increasing the scattering of phonons, which can be performed by nanostructuring the material. In this paper we investigate the effect of nanostructuration on the structure, microstructure, lattice dynamics and stability of CoSi. We obtained powders of about 13 nm by mechanical milling bulk CoSi for only four hours or by mechanical alloying pure elements for twelve hours. Nanostructuration induces a 0.1% expansion of the lattice parameter. Raman spectroscopy, associated to ab initio calculations, highlights the effectiveness of nanostructuration on phonon scattering, showing a reduction of the phonon relaxation time by as much as 80%. Powders are stable up to 450 degrees C; then grains coarsen and a partial degradation of the material occurs, probably due to silicon sublimation. Our results indicate that nanostructuration should be considered when interested to reduce CoSi thermal conductivity. (C) 2014 Elsevier Masson SAS. All rights reserved.
机译:CoSi是用于中等温度(200-500摄氏度)的廉价热电材料。它的功率因数与最先进的材料一样大。但是,其导热率太大。然后,改善其热电性能意味着增加声子的散射,这可以通过纳米结构化材料来实现。在本文中,我们研究了纳米结构对CoSi的结构,微结构,晶格动力学和稳定性的影响。通过机械研磨块状CoSi仅四个小时或通过机械合金纯元素12小时,我们获得了约13 nm的粉末。纳米结构导致晶格参数扩展0.1%。拉曼光谱法与从头算计算相关,突出了纳米结构对声子散射的有效性,表明声子弛豫时间减少了多达80%。粉末在高达450摄氏度的温度下稳定;然后晶粒变粗,材料可能会发生部分降解,这可能是由于硅升华造成的。我们的结果表明,当有兴趣降低CoSi热导率时,应考虑纳米结构。 (C)2014 Elsevier Masson SAS。版权所有。

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