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首页> 外文期刊>International Journal of Heat and Mass Transfer >Investigation of heat transfer modes in plasmonic nanoparticles
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Investigation of heat transfer modes in plasmonic nanoparticles

机译:等离子体纳米粒子中传热模式的研究

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摘要

There has been much recent interest in understanding heat transfer in nanoparticle packings in nan-otechnology such as emerging photonics applications. In this paper, we analyze heat transfer between two plasmonic nanoparticles in finite contact and suspended in air to delineate the dominant modes of heat transfer. We have previously investigated the heat transfer analysis of laser heating in a nanoparticle packing such that interfacial thermal conductance between the nanoparticle packings in contact and the predicted average nanoparticle packing temperature matches with the observations of laser sintering temperature well when G_(IC) is about 20 (MW/m~2K). When G_(IC) is less than 20 (MW/m~2K), the primary pathway for heat transfer is that across the particle-air-particle interface. Thermal transport in these assemblies is subject to electromagnetic field enhancements due to near-field energy transfer; however, we show that radiation heat transfer between the nanoparticles is not a significant heat transport mode. Sub-continuum thermal effects are found to strongly retard overall thermal transport between the particles through the air pathway.
机译:最近有兴趣了解纳米液晶填料中的纳米粒子填料中的传热,例如新出现的光子应用。在本文中,我们在有限接触中分析了两个等离子体纳米粒子之间的传热,并悬浮在空气中以描绘主要传热模式。我们之前研究了纳米粒子包装中的激光加热的传热分析,使得当G_(IC)约20时​​,纳米粒子填料与预测的平均纳米粒子填充温度匹配的纳米粒子填料之间的界面热敏与激光烧结温度的观察(mw / m〜2k)。当G_(IC)小于20时(MW / m〜2k)时,用于传热的主要途径在于颗粒 - 空气粒子界面。由于近场能量转印,这些组件中的热传输受电磁场增强;然而,我们表明纳米颗粒之间的辐射热传递不是显着的热传输模式。发现副连续热效应在通过空气途径中强烈延迟颗粒之间的总热输送。

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