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Phase Boundary Mapping in ZrNiSn Half-Heusler for Enhanced Thermoelectric Performance

机译:用于增强热电性能的ZrNiSn Half-Heusler的相边界映射

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摘要

The solubility range of interstitial Ni in the ZrNi Sn half-Heusler phase is a controversial issue, but it has an impact on the thermoelectric properties. In this study, two isothermal section phase diagrams of the Zr-Ni-Sn ternary system at 973 K and 1173 K were experimentally constructed based on the binary phase diagrams of Zr-Ni, Zr-Sn, and Ni-Sn. The thermodynamic equilibrium phases were obtained after a long time of heating treatment on the raw alloys prepared by levitation melting. Solubilities of < 0.07 at 973 K and < 0.13 at 1173 K were clearly indicated. An intermediate-Heusler phase with a partly filled Ni void was observed, which is believed to be beneficial to the lowered lattice thermal conductivity. The highest ZT value~0.71 at 973 K was obtained for ZrNi Sn . The phase boundary mapping provides an important instruction for the further optimization of ZrNiSn-based materials and other systems.
机译:间隙Ni在ZrNi Sn半Heusler相中的溶解度范围是一个有争议的问题,但它对热电性能有影响。在这项研究中,根据Zr-Ni,Zr-Sn和Ni-Sn的二元相图,通过实验构造了Zr-Ni-Sn三元体系在973 K和1173 K时的两个等温截面相图。在通过悬浮熔化制备的原料合金上长时间的热处理之后,获得了热力学平衡相。明确指出在973 K时<0.07和在1173 andK时<0.13的溶解度。观察到具有部分填充的Ni空隙的中间Heusler相,这被认为有利于降低晶格热导率。 ZrNi Sn在973 K处获得最高的ZT〜0.71。相边界映射为进一步优化基于ZrNiSn的材料和其他系统提供了重要指导。

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