首页> 外文会议>Proceedings of the ASME microanoscale heat and mass transfer international conference 2012 : Microanofluidics and Lab-on-a-chip .... >SURFACE PLASMON RESONANCE SHIFTS OF A DISPERSION OF CORE-SHELL NANOPARTICLES FOR EFFICIENT SOLAR ABSORPTION
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SURFACE PLASMON RESONANCE SHIFTS OF A DISPERSION OF CORE-SHELL NANOPARTICLES FOR EFFICIENT SOLAR ABSORPTION

机译:高效吸收太阳光的壳核纳米粒子的表面等离子体共振位移

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Nanoparticles are known to offer a variety of benefits for thermal transport, and of particular relevance here are the vast changes to the radiative properties due to the large extinction cross section at the corresponding surface plasmon resonance wavelength [1, 2]. Recent papers have indicated that dielectric core metallic shell nanoparticles yielded a plasmon resonance tunable from ultraviolet to infrared by changing the ratio of core radius to the total radius [3-6]. We are interested in developing a dispersion of core-shell multifunctional nanoparticles capable of dynamically changing their volume ratio and thus their spectral radiative properties. This work addresses the plasmon resonance tuning ranges for different metallic shell nanoparticles, and explores the solar-weighted efficiencies of corresponding core-shell nanoparticle dispersions. Through our electrostatic model, we achieve a shift in the plasmon resonance peak from a wavelength of about 500 nm to around 1500 nm for Au-coated silica core nanoparticles. Using core-shell nanoparticles dispersions, we show that it is possible to create efficient spectral solar absorption fluids. We also demonstrate that it is possible to design materials for applications which require variable spectral absorntion or scatterine.
机译:已知纳米粒子可为热传输提供多种好处,并且在此特别相关的是,由于在相应的表面等离振子共振波长处的大消光截面,辐射性质发生了巨大变化[1、2]。最近的论文表明,通过改变核半径与总半径之比,介电核金属壳纳米粒子可产生从紫外线到红外可调谐的等离子体共振[3-6]。我们对开发能够动态改变其体积比从而改变其光谱辐射特性的核-壳多功能纳米粒子的分散体感兴趣。这项工作解决了不同金属壳纳米粒子的等离子体共振调谐范围,并探索了相应的核壳纳米粒子分散体的日光加权效率。通过我们的静电模型,对于金包被的二氧化硅核纳米颗粒,我们实现了等离振子共振峰从大约500 nm的波长移动到大约1500 nm。使用核-壳纳米粒子分散体,我们表明可以创建有效的光谱太阳吸收液。我们还证明,可以为需要可变光谱吸收或散射的应用设计材料。

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