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Fabrication of thermoelectric materials - thermal stability and repeatability of achieved efficiencies

机译:热电材料的制造-效率的热稳定性和可重复性

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摘要

Metal chalcogenides have delivered the highest efficiencies among thermoelectric materials. Although the thermal stability of thermoelectric materials at device operating temperatures has been of concern, recent studies have reported the efficiencies of materials prepared with different fabrication techniques. Here, we have fabricated a p-type, multiphase lead chalcogenide compound of (PbTe)(0.55)(PbS)(0.35)(PbSe)(0.1), with three common fabrication techniques of quenched, quenched-annealed and furnace cooled followed by spark plasma sintering. The compound contains PbS-rich precipitates within a PbTe-rich matrix. The achieved samples from various fabrication procedures demonstrate distinct microstructures that evolve with thermal cycling. We have shown that the thermoelectric efficiency of metastable compound is irreversible during thermal cycling, and changes by only three thermal cycles during measurements. Our findings highlight the importance of the choice of fabrication and post-processing techniques for thermoelectric materials.
机译:在热电材料中,金属硫属元素化物的效率最高。尽管热电材料在器件工作温度下的热稳定性受到关注,但最近的研究报道了用不同制造技术制备的材料的效率。在这里,我们用淬火,淬火退火和炉冷的三种常见制造技术制造了一种(PbTe)(0.55)(PbS)(0.35)(PbSe)(0.1)的p型多相硫族化物铅化合物。火花等离子体烧结。该化合物在富含PbTe的基质中包含富含PbS的沉淀物。从各种制造程序获得的样品显示出随热循环而变化的独特微结构。我们已经表明,亚稳态化合物的热电效率在热循环过程中是不可逆的,并且在测量过程中仅发生三个热循环变化。我们的发现突出了选择热电材料的制造和后处理技术的重要性。

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