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Enhancement of thermoelectric properties by energy filtering: theoretical potential and experimental reality in nanostructured ZnSb

机译:通过能量过滤增强热电性能:纳米结构ZnSb的理论潜力和实验现实

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摘要

Energy filtering has been suggested by many authors as a means to improve thermoelectric properties. The idea is to filter away low-energy charge carriers in order to increase Seebeck coefficient without compromising electronic conductivity. This concept was investigated in the present paper for a specific material (ZnSb) by a combination of first-principles atomic-scale calculations, Boltzmann transport theory, and experimental studies of the same system. The potential of filtering in this material was first quantified, and it was as an example found that the power factor could be enhanced by an order of magnitude when the filter barrier height was 0.5 eV. Measured values of the Hall carrier concentration in bulk ZnSb were then used to calibrate the transport calculations, and nanostructured ZnSb with average grain size around 70 nm was processed to achieve filtering as suggested previously in the literature. Various scattering mechanisms were employed in the transport calculations and compared with the measured transport properties in nanostructured ZnSb as a function of temperature. Reasonable correspondence between theory and experiment could be achieved when a combination of constant lifetime scattering and energy filtering with a 0.25 eV barrier was employed. However, the difference between bulk and nanostructured samples was not sufficient to justify the introduction of an energy filtering mechanism. The reasons for this and possibilities to achieve filtering were discussed in the paper.
机译:许多作者已经提出能量过滤作为改善热电性能的一种手段。这个想法是过滤掉低能量的电荷载流子,以增加塞贝克系数而不损害电子传导性。本文通过第一性原理原子尺度计算,玻耳兹曼输运理论和同一系统的实验研究,对特定材料(ZnSb)对该概念进行了研究。首先对这种材料中的滤波电位进行了量化,作为一个示例,当滤波器势垒高度为0.5 eV时,功率因数可以提高一个数量级。然后,将散装ZnSb中霍尔载流子浓度的测量值用于校准迁移计算,并对平均晶粒尺寸约为70 nm的纳米结构ZnSb进行处理,以实现先前文献中提出的过滤。在传输计算中采用了各种散射机制,并将其与纳米结构ZnSb中随温度变化的传输特性进行了比较。当使用恒定寿命散射和具有0.25 eV势垒的能量滤波的组合时,理论和实验之间可以实现合理的对应。但是,块状样品和纳米结构样品之间的差异不足以证明引入能量过滤机制的合理性。本文讨论了这种情况的原因以及实现过滤的可能性。

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  • 来源
    《Journal of Applied Physics 》 |2016年第12期| 125103.1-125103.10| 共10页
  • 作者单位

    Centre for Materials Science and Nanotechnology (SMN), University of Oslo, P.O.B. 1126 Blindern, NO-0318 Oslo, Norway;

    Department of Physics, University of Oslo, P.O.B. 1048 Blindern, NO-0316 Oslo, Norway;

    SINTEF Materials and Chemistry, Forskningsveien 1, NO-0314 Oslo, Norway;

    Centre for Materials Science and Nanotechnology (SMN), University of Oslo, P.O.B. 1126 Blindern, NO-0318 Oslo, Norway,Department of Physics, University of Oslo, P.O.B. 1048 Blindern, NO-0316 Oslo, Norway;

    Centre for Materials Science and Nanotechnology (SMN), University of Oslo, P.O.B. 1126 Blindern, NO-0318 Oslo, Norway,Department of Physics, University of Oslo, P.O.B. 1048 Blindern, NO-0316 Oslo, Norway;

    Department of Physics, University of Oslo, P.O.B. 1048 Blindern, NO-0316 Oslo, Norway,SINTEF Materials and Chemistry, Forskningsveien 1, NO-0314 Oslo, Norway;

  • 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);
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  • 正文语种 eng
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