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Thermoelectric properties of Sb2Te3-Bi2Te3 solid solutions prepared through melt solidification in liquids

机译:通过在液体中熔融凝固制备的Sb2Te3-Bi2Te3固溶体的热电性能

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摘要

Using scanning electron and optical microscopies, we have studied the morphology of fracture surfaces and microstructure of samples of an Sb2Te3-Bi2Te3 solid solution (p-type conductivity) prepared by hot pressing and extrusion of granules produced through melt solidification in liquids. All of the samples were found to contain an additional phase in the form of a tellurium-based eutectic, and their macroscopic structure was shown to depend on the granule comminution procedure. The electrical conductivity, Seebeck coefficient, and thermal conductivity of the samples have been measured in the range 100-700 K. We have obtained materials with the highest dimensionless thermoelectric figure of merit ZT similar to 1.0 at temperatures from 300 to 440 K.
机译:使用扫描电子显微镜和光学显微镜,我们研究了Sb2Te3-Bi2Te3固溶体(p型电导率)样品的断裂表面形态和微观结构,这些样品是通过热压和挤出通过熔融凝固在液体中制备的颗粒而制备的。发现所有样品均包含碲基共晶形式的其他相,并且其宏观结构显示取决于颗粒粉碎程序。在100-700 K范围内测量了样品的电导率,塞贝克系数和热导率。我们获得的材料在300至440 K的温度下具有最高的无因次热电系数ZT类似于1.0。

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