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商业半赫斯勒合金的氧化行为及其在高功率密度热电发电机中的集成

Oxidation Behavior and Integration into High Power Density Thermoelectric Generators of Commercial Half-Heusler Alloys.

作者信息

El Oualid Soufiane, Masschelein Philippe, Aranda Lionel, Medjahdi Ghouti, Denand Benoît, Wieder Arthur, Terzi Ilayda, Blaschkewitz Przemyslaw, Ziolkowski Pawel, Candolfi Christophe, Lenoir Bertrand

机构信息

Université de Lorraine, CNRS, IJL, F-54000 Nancy, France.

Institute for Frontier Materials on Earth and in Space, German Aerospace Center (DLR), Cologne D-51147, Germany.

出版信息

ACS Appl Mater Interfaces. 2025 Jul 16;17(28):40773-40787. doi: 10.1021/acsami.5c08992. Epub 2025 Jul 2.

DOI:10.1021/acsami.5c08992
PMID:40601931
Abstract

Half-Heusler (HH) alloys are among the best high-temperature thermoelectric (TE) materials able to operate above 700 °C. Here, we report on a detailed experimental study of the oxidation behavior of commercial - and -type HH alloys, HfZrNiSnSb and HfZrTiCoSbSn, respectively, and of their integration into high-power-density TE generators (TEGs). Oxidation behaviors were investigated from room temperature to 800 °C in air on consolidated small pieces and large pellets using thermogravimetric/differential scanning calorimetry (TG/DSC). Combined with scanning electron microscopy/energy-dispersive X-ray spectroscopy (SEM/EDXS) and powder X-ray diffraction (PXRD), these experiments enabled the identification of the oxidation products and the determination of the oxidation pathway followed by each alloy. -type HH initially slowly oxidizes upon heating to 350 °C before rapidly oxidizing above this temperature, giving rise to a significant mass loss in the form of gaseous SbO. The inward diffusion of oxygen and outward diffusion of Sb led to the formation of an inner core separated from an outer layer by an empty space. In spite of the higher amount of Sb in the -type alloy, its oxidation behavior differs, with no significant mass loss observed. In contrast, Sb reacts with Co to form oxides near the surface. A two-couple TEG was fabricated with leg height = 2.0 mm. A maximum output power density of 7.5 W cm was achieved under a temperature difference Δ of 575 K. Of particular relevance, reducing does not necessitate the insertion of mechanical buffers due to the excellent mechanical strength of these alloys. Using shortened legs allows for an increase in at lower Δ, thereby reaching a temperature range over which these alloys could remain stable against oxidation if further passivation optimization could be realized.

摘要

半赫斯勒(HH)合金是能够在700℃以上工作的最佳高温热电(TE)材料之一。在此,我们报告了对商用 - 型和 - 型HH合金(分别为HfZrNiSnSb和HfZrTiCoSbSn)的氧化行为及其集成到高功率密度TE发电机(TEG)中的详细实验研究。使用热重/差示扫描量热法(TG/DSC)在空气中对固结的小块和大颗粒从室温到800℃研究氧化行为。结合扫描电子显微镜/能量色散X射线光谱(SEM/EDXS)和粉末X射线衍射(PXRD),这些实验能够识别氧化产物并确定每种合金遵循的氧化途径。 - 型HH在加热到350℃时最初缓慢氧化,在此温度以上迅速氧化,以气态SbO的形式导致显著的质量损失。氧的向内扩散和Sb的向外扩散导致形成一个由空隙与外层隔开的内核。尽管 - 型合金中Sb的含量较高,但其氧化行为不同,未观察到显著的质量损失。相反,Sb与Co反应在表面附近形成氧化物。制作了一个腿高 = 2.0 mm的双偶TEG。在575 K的温差Δ下实现了7.5 W cm的最大输出功率密度。特别相关的是,由于这些合金具有优异的机械强度,减小 不需要插入机械缓冲层。使用缩短的腿允许在较低的Δ下增加 ,从而达到一个温度范围,如果能够实现进一步的钝化优化,这些合金在该温度范围内可以保持抗氧化稳定性。

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