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通过低温机械合金化降低半赫斯勒ZrNiSn的晶格热导率

Reduced Lattice Thermal Conductivity for Half-Heusler ZrNiSn through Cryogenic Mechanical Alloying.

作者信息

Bahrami Amin, Ying Pingjun, Wolff Ulrike, Rodríguez Nicolas Pérez, Schierning Gabi, Nielsch Kornelius, He Ran

机构信息

Leibniz Institute for Solid State and Materials Research, Dresden 01069, Germany.

Department of Physics, Experimental Physics, Bielefeld University, Bielefeld 33501, Germany.

出版信息

ACS Appl Mater Interfaces. 2021 Aug 18;13(32):38561-38568. doi: 10.1021/acsami.1c05639. Epub 2021 Aug 5.

Abstract

The ZrNiSn-based half-Heusler compounds are promising for thermoelectric applications in the mid-to-high temperature range. However, their thermoelectric performance was greatly limited due to the remaining high thermal conductivity, especially the lattice thermal conductivity. Herein, we report the synthesis of pristine half-Heusler ZrNiSn through direct mechanical alloying at a liquid nitrogen temperature (i.e., cryomilling) followed by spark plasma sintering. It is shown that the onset sintering temperature is greatly reduced for the cryomilled powders with a high density. A reduced thermal conductivity is subsequently realized from room temperature to 700 °C in the cryomilled samples than the one that was differently prepared (from 7.3 to 4.5 W/m K at room temperature). The pronounced reduction in thermal conductivity of ZrNiSn yields a maximum of ∼0.65 at 700 °C. Our study shows the possibility of cryomilling in advancing the thermoelectric performance through enhanced phonon scattering.

摘要

基于ZrNiSn的半赫斯勒化合物在中高温范围内的热电应用中颇具潜力。然而,由于其仍然较高的热导率,尤其是晶格热导率,它们的热电性能受到了极大限制。在此,我们报道了通过在液氮温度下进行直接机械合金化(即低温球磨),随后进行放电等离子烧结来合成原始的半赫斯勒ZrNiSn。结果表明,对于具有高密度的低温球磨粉末,起始烧结温度大幅降低。随后,与通过其他方式制备的样品相比,低温球磨样品在室温至700°C范围内实现了热导率的降低(室温下从7.3降至4.5 W/m·K)。ZrNiSn热导率的显著降低在700°C时产生了高达约0.65的数值。我们的研究表明,低温球磨通过增强声子散射来提升热电性能具有可能性。

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