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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Effective medium theory based modeling of the thermoelectric properties of composites: comparison between predictions and experiments in the glass-crystal composite system Si10As15Te75-Bi0.4Sb1.6Te3
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Effective medium theory based modeling of the thermoelectric properties of composites: comparison between predictions and experiments in the glass-crystal composite system Si10As15Te75-Bi0.4Sb1.6Te3

机译:基于有效介质理论的复合材料热电性能建模:玻璃-晶体复合系统Si10As15Te75-Bi0.4Sb1.6Te3中预测和实验的比较

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摘要

We report on the theoretical predictions of the effective medium theory (EMT) and its generalized version taking into account percolation theory (GEMT) on the thermoelectric properties of composites based on Landauer and Sonntag's equations. The results were tested experimentally on composites composed of the glassy phase Si10As15Te75 and the crystalline phase Bi0.4Sb1.7Te3. The evolution of the electrical resistivity and thermal conductivity with the fraction of crystalline phase matches very well the experimental data, although the GEMT model fails to predict the thermopower. A better agreement between theory and experiment could be obtained by combining the principles of the GEMT and the Webman-Jortner-Cohen models. Despite the fact that the GEMT model originally predicts the possibility to optimize the dimensionless figure of merit ZT of composites by adjusting the fraction and the values of the transport properties of each phase, the new model developed rules out any beneficial influence on the ZT values. These results confirm within a different framework the early conclusions of Bergman regarding the impossibility of improving the ZT values using multi-phased materials.
机译:我们报告了有效介质理论(EMT)及其广义版本的理论预测,其中考虑了基于Landauer和Sonntag方程的复合材料热电性能的渗流理论(GEMT)。对由玻璃相Si10As15Te75和结晶相Bi0.4Sb1.7Te3组成的复合材料进行了实验测试。电阻率和导热率随晶相分数的变化与实验数据非常吻合,尽管GEMT模型无法预测热功率。结合GEMT的原理和Webman-Jortner-Cohen模型,可以在理论和实验之间取得更好的一致性。尽管GEMT模型最初预测了通过调整每个相的比例和传输特性值来优化复合材料无因次优ZT的可能性,但新模型的开发排除了对ZT值的任何有益影响。这些结果在不同的框架内证实了Bergman关于使用多相材料不可能改善ZT值的早期结论。

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