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An Alternative Approach to Improve the Thermoelectric Properties of Half-Heusler Compounds

机译:改善半霍斯勒化合物热电性能的另一种方法

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摘要

In this report an alternative approach for optimization of the thermoelectric properties of half-Heusler compounds is presented. The common approaches are partial substitution of elements by elements of nearby groups and substitution with homologs. In this approach we substitute one element by one neighboring element with fewer valence electrons and by one with more electrons. The amounts of the substitutions are chosen such that the amount of deficiency and excess electrons are compensated. In the solid solution TiCo_(x)(Ni_(0.5)Fe_(0.5))_(1-x)Sb, Co was substituted equally by Fe and Ni. The aim of the substitution was to improve the figure of merit by a reduction of the thermal conductivity accompanied by an unchanged high Seebeck coefficient. The solid solution TiCo_(x)(Ni_(0.5)Fe_(0.5))_(1-x)Sb was synthesized by arc-melting. The structure of the as-cast samples was analyzed by x-ray diffraction. Rietveld refinements yielded the C1_(b) structure type with a small amount of antisite disorder between Co and Sb. The thermoelectric properties of the solid solution were investigated in the temperature range from 2 K to 400 K. A Seebeck coefficient of -260 (mu)VK~(-1) at 400 K and a reduction of the thermal conductivity to 3 Wm~(-1) K~(-1) were measured. The figure of merit was enhanced by a factor of about seven to a value of 0.04 at 400 K for TiCo_(0.8)(Ni_(0.1)Fe_(0.1))Sb.
机译:在本报告中,提出了另一种优化半霍斯勒化合物热电性能的方法。常见的方法是用附近基团的元素部分替换元素,并用同源物替换。在这种方法中,我们用一个价电子少的相邻元素和一个电子多的元素代替一个元素。选择取代的量使得补偿不足和过量的电子。在固溶体TiCo_(x)(Ni_(0.5)Fe_(0.5))_(1-x)Sb中,Co被Fe和Ni均等取代。替代的目的是通过降低热导率并同时保持不变的高塞贝克系数来改善品质因数。通过电弧熔融合成固溶体TiCo_(x)(Ni_(0.5)Fe_(0.5))_(1-x)Sb。通过X射线衍射分析铸态样品的结构。 Rietveld改进产生了C1_(b)结构类型,并且Co和Sb之间存在少量的反位错。在2 K至400 K的温度范围内研究了固溶体的热电特性。在400 K下的塞贝克系数为-260μVK〜(-1),导热系数降低至3 Wm〜( -1)测量K〜(-1)。 TiCo_(0.8)(Ni_(0.1)Fe_(0.1))Sb在400 K时的品质因数提高了约7倍,达到0.04。

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