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An Integrated Approach to Thermoelectrics: Combining Phonon Dynamics, Nanoengineering, Novel Materials Development, Module Fabrication, and Metrology

机译:热电学的集成方法:结合声子动力学,纳米工程,新型材料开发,模块制造和计量学

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摘要

This review discusses the longstanding efforts to develop advanced thermoelectrics through a multidisciplinary approach by combining condensed matter physics, nanotechnology, solid-state chemistry, electrical engineering, mechanical engineering, and metrology. The phonon dynamics of skutterudites, clathrates, tetrahedrites, and layered LaOBiSSe are investigated through inelastic neutron scattering, allowing insights into their low lattice thermal conductivity due to rattling in a cage as well as under planar coordination. The electrical resistivity, Seebeck coefficient, and Hall coefficient of Bi-nanowires are successfully measured with a home-made system, demonstrating a size effect in thermoelectric and galvanomagnetic phenomena. For PbTe-based bulk thermoelectrics, an exceptionally high figure of merit ZT (approximate to 1.8 at 800 K) is achieved through nanostructuring. Moreover, correspondingly high conversion efficiency (approximate to 11% for a temperature difference of 590 K) is demonstrated in nanostructured PbTe-based modules. Sulfides (tetrahedrite, colusite, and CdI2-type layered systems) and arsenides (LnFeAsO and BaZn2As2) are developed as environmentally friendly and emerging thermoelectric materials, respectively. The output power and efficiency of modules with novel materials, including nanostructured PbTe, Zn4Sb3, and clathrates, are measured with the highly accurate self-made system. Future opportunities and challenges for the widespread use of thermoelectric waste heat recovery and energy harvesting are also discussed.
机译:这篇综述讨论了通过结合凝聚态物理,纳米技术,固态化学,电气工程,机械工程和计量学的多学科方法来发展先进热电学的长期努力。通过非弹性中子散射,研究了方钴矿,包合物,四面体和层状LaOBiSSe的声子动力学,从而了解了由于笼子中的嘎嘎声以及平面配位引起的低晶格热导率。用自制系统成功地测量了双纳米线的电阻率,塞贝克系数和霍尔系数,证明了在热电和电磁现象中的尺寸效应。对于基于PbTe的块状热电器件,通过纳米结构可实现极高的品质因数ZT(在800 K时约为1.8)。此外,在纳米结构的基于PbTe的模块中显示出相应的高转换效率(对于590 K的温差约为11%)。硫化物(四面体,堇青石和CdI2型层状体系)和砷化物(LnFeAsO和BaZn2As2)分别被开发为环境友好型和新兴的热电材料。使用高度精确的自制系统测量具有新型材料(包括纳米结构的PbTe,Zn4Sb3和包合物)的模块的输出功率和效率。还讨论了热电废热回收和能量收集的广泛使用的未来机遇和挑战。

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  • 来源
    《Advanced energy materials》 |2019年第23期|1801304.1-1801304.29|共29页
  • 作者单位

    Natl Inst Adv Ind Sci & Technol, Res Inst Energy Conservat, Tsukuba, Ibaraki 3058568, Japan;

    Natl Inst Adv Ind Sci & Technol, Res Inst Energy Conservat, Tsukuba, Ibaraki 3058568, Japan;

    Natl Inst Adv Ind Sci & Technol, Res Inst Energy Conservat, Tsukuba, Ibaraki 3058568, Japan;

    Natl Inst Adv Ind Sci & Technol, Res Inst Energy Conservat, Tsukuba, Ibaraki 3058568, Japan;

    Natl Inst Adv Ind Sci & Technol, Res Inst Energy Conservat, Tsukuba, Ibaraki 3058568, Japan;

    Natl Inst Adv Ind Sci & Technol, Planning Headquarters, Tsukuba, Ibaraki 3058568, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bulk nanostructuring; metrology; modularization; nanowires; rattling;

    机译:散装纳米结构;计量;模块化;纳米线;嘎嘎作响;

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