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Improvement in the Thermoelectric Figure-of-Merit of TAGS-85 by Rare Earth Additions

机译:稀土添加对TAGS-85热电性能的改进

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TAGS-85 is a well-known thermoelectric material based on germanium monotelluride that exhibits a second-order displacive transformation from a high-temperature cubic to a low-temperature rhombohedral polymorph. Recent efforts to improve the thermoelectric figure-of-merit through the addition of small amounts of the rare earth elements Ce and Yb have demonstrated a 25 percent increase in ZT at 700K in materials obtained by solidification from the melt. Preliminary analysis by x-ray diffraction of the chemically-modified alloy suggests a partial stabilization of the high-temperature cubic polymorph. ~(125)Te NMR studies confirm the incorporation of rare earth cations into the GeTe-based lattice. Solid state synthesis has been successfully applied to the processing of rare-earth-doped TAGS-85 and has resulted in a further increase in ZT beyond the levels initially observed in melt-solidified materials. This is believed to be due to improved homogeneity in the distribution of the lanthanide.
机译:TAGS-85是一种基于单碲化锗的著名热电材料,它具有从高温立方到低温菱形多晶型物的二阶位移变换。通过添加少量稀土元素Ce和Yb改善热电品质因数的最新努力表明,从熔体凝固获得的材料在700K时ZT增加25%。通过化学修饰合金的X射线衍射进行的初步分析表明,高温立方多晶型物具有部分稳定性。 〜(125)Te NMR研究证实了稀土阳离子掺入GeTe基晶格中。固态合成已成功应用于稀土掺杂TAGS-85的加工,并导致ZT进一步增加,超过了最初在熔融固化材料中观察到的水平。认为这是由于镧系元素分布的均匀性提高。

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