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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Understanding the superior thermoelectric performance of Sb precipitated Ge17Sb2Te20
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Understanding the superior thermoelectric performance of Sb precipitated Ge17Sb2Te20

机译:了解Sb沉淀Ge17Sb2Te20的卓越热电性能

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摘要

Composites were ruled out more than thirty years ago as a means of enhancing the figure-of-merit, and therefore conversion efficiency, of thermoelectric materials. However, recently it has been experimentally proven that the shortcomings of composite thermoelectric materials can be overcome using nanostructured secondary phases. Phase change materials, which have found applications in nonvolatile memory storage, have been identified as an alternative to Pb-based chalcogenide thermoelectric materials. Research has revealed that the thermoelectric figure-of-merit for these compounds can be increased using secondary phases in the absence of nanostructuring. The following work has studied the effects of secondary phases of Sb on the thermoelectric properties of Ge17Sb2Te20. This work has found that secondary phases of elemental Sb introduce additional charge carrier scattering that leads to increased power factor values and figure-of-merit values in excess of a factor of 2, further emphasizing the importance of revisiting composites for enhancing the performance of thermoelectric materials.
机译:三十多年前,人们就排除了复合材料作为提高热电材料的品质因数,从而提高其转换效率的一种手段。然而,最近已经通过实验证明,使用纳米结构的第二相可以克服复合热电材料的缺点。已经发现相变材料已经在非易失性存储器中得到应用,已经被确定为基于铅的硫族化物热电材料的替代品。研究表明,在没有纳米结构的情况下,使用次级相可以提高这些化合物的热电品质因数。以下工作研究了Sb的第二相对Ge17Sb2Te20热电性能的影响。这项工作已经发现,元素Sb的次级相会引入额外的电荷载流子散射,从而导致功率因数值和品质因数值的增加超过2倍,进一步强调了重新研究复合材料对增强热电性能的重要性。材料。

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