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Impact of Interstitial Ni on the Thermoelectric Properties of the Half-Heusler TiNiSn

机译:间隙Ni对半霍斯勒TiNiSn热电性能的影响

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摘要

TiNiSn is an intensively studied half-Heusler alloy that shows great potential for waste heat recovery. Here, we report on the structures and thermoelectric properties of a series of metal-rich TiNi1+ySn compositions prepared via solid-state reactions and hot pressing. A general relation between the amount of interstitial Ni and lattice parameter is determined from neutron powder diffraction. High-resolution synchrotron X-ray powder diffraction reveals the occurrence of strain broadening upon hot pressing, which is attributed to the metastable arrangement of interstitial Ni. Hall measurements confirm that interstitial Ni causes weak n-type doping and a reduction in carrier mobility, which limits the power factor to 2.5–3 mW m−1 K−2 for these samples. The thermal conductivity was modelled within the Callaway approximation and is quantitively linked to the amount of interstitial Ni, resulting in a predicted value of 12.7 W m−1 K−1 at 323 K for stoichiometric TiNiSn. Interstitial Ni leads to a reduction of the thermal band gap and moves the peak ZT = 0.4 to lower temperatures, thus offering the possibility to engineer a broad ZT plateau. This work adds further insight into the impact of small amounts of interstitial Ni on the thermal and electrical transport of TiNiSn.
机译:TiNiSn是一种经过深入研究的半霍斯勒合金,显示出巨大的废热回收潜力。在这里,我们报告通过固态反应和热压制备的一系列富金属的TiNi1 + ySn组合物的结构和热电性能。间隙Ni的量和晶格参数之间的一般关系由中子粉末衍射确定。高分辨率同步加速器X射线粉末衍射揭示了热压时应变变宽的发生,这归因于间隙Ni的亚稳排列。霍尔测量结果证实,间隙Ni会引起弱的n型掺杂并降低载流子迁移率,从而将功率因数限制为2.5–3 mW m -1 K -2 这些样本。在Callaway近似中对热导率进行建模,并将其与间隙Ni的量定量关联,得出在323处的预测值为12.7 W m -1 K -1 化学计量的TiNiSn的K。间隙Ni导致热带隙的减小,并将ZT = 0.4的峰值移至较低的温度,从而提供了设计宽ZT平稳期的可能性。这项工作进一步了解了少量间隙Ni对TiNiSn的热和电传输的影响。

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