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Enhancement of Thermoelectric Figure-of-Merit by a Bulk Nanostructuring Approach

机译:体纳米结构方法提高热电品质因数

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摘要

Recently a significant figure-of-merit (ZT) improvement in the most-studied existing thermoelectric materials has been achieved by creating nanograins and nanostructures in the grains using the combination of high-energy ball milling and a direct-current-induced hot-press process. Thermoelectric transport measurements, coupled with microstructure studies and theoretical modeling, show that the ZT improvement is the result of low lattice thermal conductivity due to the increased phonon scattering by grain boundaries and structural defects. In this article, the synthesis process and the relationship between the microstructures and the thermoelectric properties of the nanostructured thermoelectric bulk materials with an enhanced ZT value are reviewed. It is expected that the nanostructured materials described here will be useful for a variety of applications such as waste heat recovery, solar energy conversion, and environmentally friendly refrigeration.
机译:最近,通过结合使用高能球磨和直流感应热压技术,在晶粒中产生纳米颗粒和纳米结构,已使研究最深入的现有热电材料的品质因数(ZT)显着提高。处理。热电传输测量,再加上微观结构研究和理论建模,表明ZT的提高是由于晶界和结构缺陷增加了声子散射,导致晶格导热系数低。本文综述了ZT值提高的纳米结构热电体材料的合成工艺及其微观结构与热电性能之间的关系。预期本文所述的纳米结构材料将可用于多种应用,例如废热回收,太阳能转化和环保制冷。

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  • 来源
    《Advanced Functional Materials 》 |2010年第3期| 357-376| 共20页
  • 作者单位

    Boston College Chestnut Hill, Massachusetts 02467 (USA);

    Massachusetts Institute of Technology Cambridge, Massachusetts 02139 (USA);

    Massachusetts Institute of Technology Cambridge, Massachusetts 02139 (USA);

    Boston College Chestnut Hill, Massachusetts 02467 (USA);

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