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High-throughput exploration of thermoelectric and mechanical properties of amorphous NbO_2 with transition metal additions

机译:过渡金属添加对非晶NbO_2热电和机械性能的高通量探索

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摘要

To increase the thermoelectric efficiency and reduce the thermal fatigue upon cyclic heat loading, alloying of amorphous NbO_2 with all 3d and 5d transition metals has systematically been investigated using density functional theory. It was found that Ta fulfills the key design criteria, namely, enhancement of the Seebeck coefficient and positive Cauchy pressure (ductility gauge). These quantum mechanical predictions were validated by assessing the thermoelectric and elastic properties on combinatorial thin films, which is a high-throughput approach. The maximum power factor is 2813 μWm~(-1) K~(-2) for the Ta/Nb ratio of 0.25, which is a hundredfold increment compared to pure NbO_2 and exceeds many oxide thermoelectrics. Based on the elasticity measurements, the consistency between theory and experiment for the Cauchy pressure was attained within 2%. On the basis of the electronic structure analysis, these configurations can be perceived as metallic, which is consistent with low electrical resistivity and ductile behavior. Furthermore, a pronounced quantum confinement effect occurs, which is identified as the physical origin for the Seebeck coefficient enhancement.
机译:为了提高热电效率并降低循环热负荷时的热疲劳,已使用密度泛函理论系统地研究了非晶态NbO_2与所有3d和5d过渡金属的合金化。发现Ta满足关键设计标准,即提高塞贝克系数和正柯西压力(延性计)。这些量子力学的预测通过评估组合薄膜的热电和弹性特性得到了验证,这是一种高通量方法。 Ta / Nb比为0.25时,最大功率因数为2813μWm〜(-1)K〜(-2),与纯NbO_2相比增加了一百倍,并且超过了许多氧化物热电元件。根据弹性测量,柯西压力理论与实验之间的一致性达到2%以内。在电子结构分析的基础上,可以将这些配置视为金属,这与低电阻率和延展性一致。此外,发生明显的量子限制效应,其被确定为塞贝克系数增强的物理起源。

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  • 来源
    《Journal of Applied Physics》 |2016年第4期|045104.1-045104.7|共7页
  • 作者单位

    Materials Chemistry, RWTH Aachen University, Kopernikusstr. 10, 52074 Aachen, Germany;

    Materials Chemistry, RWTH Aachen University, Kopernikusstr. 10, 52074 Aachen, Germany;

    Materials Chemistry, RWTH Aachen University, Kopernikusstr. 10, 52074 Aachen, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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