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A combinatorial approach to microstructure and thermopower of bulk thermoelectric materials: the pseudo-ternary PbTe–Ag_2Te–Sb_2Te_3 system

机译:散装热电材料微观结构和热功率的组合方法:伪三元PbTe–Ag_2Te–Sb_2Te_3系统

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摘要

The microstructures and Seebeck coefficients of thermoelectric alloys in the pseudo-ternary PbTe–Ag_2Te–Sb_2Te_3 system were examined using samples that were compositionally graded by unidirectional solidification by the Bridgman method and diffusion couples. At compositions near the middle of the pseudo-binary PbTe–AgSbTe_2 line, a compositionally modulated microstructure has been found. From diffusion couple experiments, it is found that the PbTe–AgSbTe_2 system exhibits a miscibility gap at low temperatures while it forms a complete solid solution at high temperatures; the critical temperature is between 400 °C and 450 °C. The modulated microstructure originates from the decomposition of the high-temperature solid solution during cooling. Scanning Seebeck coefficient measurement on these samples covers a wide compositional space of the pseudo-ternary system. The Seebeck coefficient transitions from positive values at AgSbTe_2-rich compositions to negative values at PbTe-rich compositions on the pseudo-binary PbTe–AgSbTe_2 line. Composition-graded samples prepared by the Bridgman method are thus useful to investigate thermoelectric materials in multi-component systems.
机译:伪三元PbTe–Ag_2Te–Sb_2Te_3系统中热电合金的微观结构和塞贝克系数使用通过Bridgman方法和扩散对通过单向凝固进行成分分级的样品进行了检查。在伪二进制PbTe–AgSbTe_2线的中间附近的成分中,发现了成分调制的微观结构。通过扩散偶合实验发现,PbTe–AgSbTe_2系统在低温下表现出可混溶性,而在高温下形成完整的固溶体。临界温度在400°C至450°C之间。调节的微观结构源自冷却期间高温固溶体的分解。这些样品的扫描塞贝克系数测量涵盖了伪三元系统的广阔组成空间。在伪二进制PbTe–AgSbTe_2线上,塞贝克系数从富AgSbTe_2的正值转变为富PbTe的负值。因此,通过Bridgman方法制备的成分分级的样品可用于研究多组分系统中的热电材料。

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