Development of Nanostructures in Thermoelectric Pb-Te-Sb Alloys

T. Ikeda, V. Ravi, L. A. Collins, S. Haile, G. J. Snyder
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引用次数: 3

Abstract

In analogy to recent demonstrations of enhanced thermoelectric properties in superlattice materials, composite structures with nanoscale features promise dramatic improvements in the figure of merit of thermoelectric materials. Fabrication of nanostructured thermoelectric materials via bulk synthesis is an attractive route for commercial applications. Nanometer scale lamellae of PbTe and Sb2 Te3 form when quenched eutectic PbTe-Sb2Te 3 melt is subsequently annealed. The lamellar spacing depends on the temperature and time of the anneal. The mechanism for the development of the nanostructures can be characterized by examining the fraction of material transformed as a function of anneal time. Preliminary analysis of the shape factor exponent reveals that the evolution of the nanostructured lamellae is likened to the thickening of very large plates. The coarsening of the lamellar spacing is also examined as a function of time
热电Pb-Te-Sb合金纳米结构的研究进展
与最近在超晶格材料中增强热电性能的演示类似,具有纳米级特征的复合结构有望显著改善热电材料的性能。通过体合成制备纳米结构热电材料是一种有吸引力的商业应用途径。对淬火共晶PbTe- sb2te熔体进行退火,形成纳米尺度的PbTe和sb2te片层。片层间距取决于退火的温度和时间。纳米结构的形成机制可以通过观察材料的转化率随退火时间的变化来表征。形状因子指数的初步分析表明,纳米结构薄片的演变类似于非常大的板的加厚。片层间距的粗化也作为时间的函数进行了研究
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