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Phase transition induced by localized surface plasmon resonance of nanoparticle assemblies

机译:纳米粒子组件的局部表面等离子体共振引起的相变

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摘要

A numerical model concerning the phase transition and temperature distribution of matrix media around plasmonic nanoparticle assemblies under illumination of monochromatic light is investigated. The critical intensity of incident light for isolated nanosphere, nanodisk, and nanorod to melting the surrounding ice is obtained. For nanospheres and nanodisk dimers, enhancement of photothermal conversion (PTC) is observed. Besides, the phase transition of matrix media is not only influenced by FTC, but also the configuration of nanoparticle assemblies. In particular, we demonstrate that for nanorod dimers arranged end-to-end and side-to-side, the dissipation of light for two nanorods are the same in every polarization angles. The change of polarization angle only influence the overall light-to-heat conversion of the dimer. However, for L geometry nanorod dimer, the dissipation of light are different for the two nanorods. This present a way to manipulate and precisely control of temperature distribution and phase transition in nanoscale by tuning the light polarization angles. (C) 2018 Elsevier Ltd. All rights reserved.
机译:研究了单色光照射下等离子体纳米粒子组件周围基质介质的相变和温度分布的数值模型。获得了孤立的纳米球,纳米盘和纳米棒融化周围冰的临界入射光强度。对于纳米球和纳米盘二聚体,观察到光热转化(PTC)增强。此外,基质介质的相变不仅受到FTC的影响,而且还受到纳米颗粒组装体结构的影响。特别地,我们证明了对于以首尾相连和并排排列的纳米棒二聚体,两个纳米棒的光耗散在每个偏振角都是相同的。偏振角的变化仅影响二聚体的整体光热转换。但是,对于L几何纳米棒二聚体,两个纳米棒的光耗是不同的。这提供了一种通过调节光偏振角来精确控制纳米级温度分布和相变的方法。 (C)2018 Elsevier Ltd.保留所有权利。

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