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Engineering heat transport in nanoparticle-in-alloy composites: The role of Mie scattering

机译:纳米粒子 - 合金复合材料中的工程热传输:MIE散射的作用

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摘要

Previous work toward engineering lower thermal conductivity of nanoparticle-in-alloy semiconductor composites have indicated that optimal nanoparticle sizes should lie between the Rayleigh and geometric phonon scattering regimes (i.e. the Mie regime); yet, phonon scattering models that are accurate in the Mie regime have never been employed to investigate the thermal transport. Here, we exploit exact solutions from continuum mechanics that separately treat longitudinal and transverse phonon scattering from nanoparticles across a wide spectrum of wavelengths, including the Rayleigh, Mie, and geometric scattering regimes. The solutions intrinsically account for material contrast effects from density and both normal and shear elastic constants. We find that consideration of Mie scattering effects drastically alters the material selection and particle sizing process for optimal nanocomposites. In particular, a previously unreported inter-relationship between density and elastic contrast is reported: in the Mie regime, a suppression of the scattering cross section is found in cases where the sound speeds of the matrix and nanoparticle are closely matched. This suppression can extend the transition wavelength to geometric scattering by more than an order-of-magnitude, with severe effects to thermal transport. We explore how these considerations change the optimal sizing of nanoparticles for metal/semiconductor composites, with specific application to the experimentally significant case of InGaAs composites. Published under license by AIP Publishing.
机译:以前的工程较低的纳米粒子 - 合金半导体复合材料的导热率表明,最佳的纳米颗粒尺寸应位于瑞利和几何声子散射方案(即MIE制度)之间;然而,在MIE制度中准确的声子散射模型从未被用于调查热运输。这里,我们利用连续式机械的精确解决方案,其分别处理从纳米颗粒的纵向和横向声子散射跨越广泛的波长,包括瑞利,mie和几何散射制度。该解决方案本质上解释了密度和正常和剪切弹性常数的材料对比度。我们发现,考虑MIE散射效果大大改变了最佳纳米复合材料的材料选择和粒度尺寸尺寸。特别地,报告了密度和弹性对比之间的先前未报告的间相互作用:在MIE方案中,在基质和纳米颗粒的声速紧密匹配的情况下,发现散射横截面的抑制。这种抑制可以使过渡波长延伸到几何散射的大于一个大小,具有严重的热传输。我们探讨这些考虑因素如何改变金属/半导体复合材料的纳米颗粒的最佳尺寸,具体应用于InGaAs复合材料的实验显着案例。通过AIP发布在许可证下发布。

著录项

  • 来源
    《Journal of Applied Physics 》 |2019年第14期| 145103.1-145103.7| 共7页
  • 作者

    Feser Joseph P.;

  • 作者单位

    Univ Delaware Dept Mech Engn Spencer Lab 126 Newark DE 19716 USA;

  • 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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