Ikeda Matthias, Tomeš Petr, Prochaska Lukas, Eilertsen James, Populoh Sascha, Löffler Stefan, Svagera Robert, Waas Monika, Sassik Herbert, Weidenkaff Anke, Paschen Silke
Institute of Solid State Physics, TU Wien, Wiedner Hauptstr. 8-10, 1040 Vienna, Austria.
Solid State Chemistry and Catalysis, Empa, Überlandstr. 129, 8600 Dübendorf, Switzerland.
Z Anorg Allg Chem. 2015 Sep;641(11):2020-2028. doi: 10.1002/zaac.201500179. Epub 2015 Sep 16.
Nano-grained CoSb was prepared by melt-spinning and subsequent spark plasma sintering. The phonon thermal conductivity of skutterudites is known to be sensitive to the kind and the amount of guest atoms. Thus, unfilled CoSb can serve as model compound to study the impact of a nanostructure on the thermoelectric properties, especially the phonon thermal conductivity. Therefore, a series of materials was prepared differing only by the cooling speed during the quenching procedure. In contrast to clathrates, the microstructure of meltspun CoSb was found to be sensitive to the cooling speed. Although the phonon thermal conductivity, studied by means of Flash and 3 measurements, was found to be correlated with the grain size, the bulk density of the sintered materials had an even stronger impact. Interestingly, the reduced bulk density did not result in an increased electrical resistivity. The influence of Sb and CoSb as foreign phase on the electronic properties of CoSb was revealed by a multi-band Hall effect analysis. While CoSb increases the charge carrier density, the influence of the highly mobile charge carriers introduced by elemental Sb on the thermoelectric properties of the composite offer an interesting perspective for the preparation of efficient thermoelectric composite materials.
通过熔体纺丝和随后的放电等离子烧结制备了纳米晶CoSb。已知方钴矿的声子热导率对客体原子的种类和数量敏感。因此,未填充的CoSb可作为模型化合物来研究纳米结构对热电性能的影响,特别是声子热导率。因此,制备了一系列仅在淬火过程中的冷却速度不同的材料。与包合物不同,发现熔体纺丝CoSb的微观结构对冷却速度敏感。尽管通过闪光法和3ω测量研究发现声子热导率与晶粒尺寸相关,但烧结材料的体积密度影响更强。有趣的是,体积密度降低并未导致电阻率增加。通过多带霍尔效应分析揭示了Sb和CoSb作为异相对CoSb电子性能的影响。虽然CoSb增加了载流子密度,但元素Sb引入的高迁移率载流子对复合材料热电性能的影响为制备高效热电复合材料提供了有趣的前景。