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The intrinsic disorder related alloy scattering in ZrNiSn half-Heusler thermoelectric materials

机译:ZrNiSn半霍斯勒热电材料中与本征无序有关的合金散射

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摘要

The intrinsic structural disorder dramatically affects the thermal and electronic transport in semiconductors. Although normally considered an ordered compound, the half-Heusler ZrNiSn displays many transport characteristics of a disordered alloy. Similar to the (Zr,Hf)NiSn based solid solutions, the unsubstituted ZrNiSn compound also exhibits charge transport dominated by alloy scattering, as demonstrated in this work. The unexpected charge transport, even in ZrNiSn which is normally considered fully ordered, can be explained by the Ni partially filling interstitial sites in this half-Heusler system. The influence of the disordering and defects in crystal structure on the electron transport process has also been quantitatively analyzed in ZrNiSn1-xSbx with carrier concentration n_H ranging from 5.0×10^(19) to 2.3×10^(21) cm^(−3) by changing Sb dopant content. The optimized carrier concentration n_H ≈ 3–4×10^(20) cm^(−2) results in ZT ≈ 0.8 at 875K. This work suggests that MNiSn (M = Hf, Zr, Ti) and perhaps most other half-Heusler thermoelectric materials should be considered highly disordered especially when trying to understand the electronic and phonon structure and transport features.
机译:固有的结构紊乱极大地影响了半导体中的热和电子传输。尽管通常被认为是有序化合物,但半霍斯勒ZrNiSn表现出无序合金的许多传输特性。类似于(Zr,Hf)NiSn基固溶体,未取代的ZrNiSn化合物还表现出以合金散射为主的电荷传输,如本研究所示。即使是在通常被认为是完全有序的ZrNiSn中,意外的电荷传输也可以用这种半Heusler系统中的Ni部分填充间隙位置来解释。还以载流子浓度n_H为5.0×10 ^(19)至2.3×10 ^(21)cm ^(− 3)的ZrNiSn1-xSbx定量分析了无序和晶体结构缺陷对电子传输过程的影响。 )来改变Sb的掺杂剂含量。优化的载流子浓度n_H≈3-4×10 ^(20)cm ^(-2)导致在875K时ZT≈0.8。这项工作表明,应将MNiSn(M = Hf,Zr,Ti)和大多数其他半霍斯勒热电材料视为高度无序的,特别是在试图了解电子和声子的结构和输运特性时。

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