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多壁碳纳米管在方钴矿中的分散及其对热电和力学性能的影响。

Dispersion of Multi-Walled Carbon Nanotubes in Skutterudites and Its Effect on Thermoelectric and Mechanical Properties.

作者信息

Schmitz Andreas, Schmid Carolin, de Boor Johannes, Müller Eckhard

出版信息

J Nanosci Nanotechnol. 2017 Mar;17(3):1547-554. doi: 10.1166/jnn.2017.13727.

Abstract

Filled cobalt-antimony based skutterudites have proven themselves as very promising thermoelectric materials for generator applications in an intermediate temperature range between 400 and 800 K due to their high figure of merit. Besides the functional thermoelectric properties also the skutterudites’ mechanical properties play an important role to withstand external mechanical and internal thermomechanical loads during operation. Properties of interest are hardness as well as fracture toughness and resistance to fatigue. Carbon nano tubes are well known for their high tensile strength and may therefore be used to increase the mechanical strength of composite materials. Additionally, the thermoelectric properties of the composite material might benefit from the high electrical conductivity of carbon nano tubes and increased phonon scattering at interfaces between matrix and carbon nano tube. A main precondition for benefiting from embedded nano-tubes is to achieve a homogeneous distribution of the CNTs and good adhesion between carbon nano tube and matrix material. In this work we present the influence of the introduction of multi-walled carbon nano tubes on the thermoelectric and mechanical properties of p-type skutterudites Ce(0.14)La(0.06)Co(2)Fe(2)Sb(12). The influence of different carbon nano tube concentrations and preparation routes on the resulting composite material’s thermoelectric, mechanical and microstructural properties is studied. A reduction of electrical and thermal conductivity as well as fracture strength is observed with increasing carbon nano tube content which is attributed to strong agglomeration of the nano tubes. The results underline the pivotal role of a homogeneous distribution of the carbon nano tubes for improving the mechanical properties of skutterudites.

摘要

填充型钴锑基方钴矿由于其高优值,已被证明是用于400至800K中间温度范围发电机应用的非常有前景的热电材料。除了功能热电性能外,方钴矿的机械性能在运行过程中承受外部机械和内部热机械载荷方面也起着重要作用。感兴趣的性能包括硬度、断裂韧性和抗疲劳性。碳纳米管以其高拉伸强度而闻名,因此可用于提高复合材料的机械强度。此外,复合材料的热电性能可能受益于碳纳米管的高电导率以及基体与碳纳米管界面处声子散射的增加。从嵌入的纳米管中受益的一个主要前提是实现碳纳米管的均匀分布以及碳纳米管与基体材料之间的良好粘附。在这项工作中,我们展示了多壁碳纳米管的引入对p型方钴矿Ce(0.14)La(0.06)Co(2)Fe(2)Sb(12)的热电和机械性能的影响。研究了不同碳纳米管浓度和制备路线对所得复合材料的热电、机械和微观结构性能的影响。随着碳纳米管含量的增加,观察到电导率和热导率以及断裂强度降低,这归因于纳米管的强烈团聚。结果强调了碳纳米管均匀分布对改善方钴矿机械性能的关键作用。

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