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Enhancing Localized Evaporation through Separated Light Absorbing Centers and Scattering Centers

机译:通过分离的光吸收中心和散射中心来增强局部蒸发

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This report investigates the enhancement of localized evaporation via separated light absorbing particles (plasmonic absorbers) and scattering particles (polystyrene nanoparticles). Evaporation has been considered as one of the most important phase-change processes in modern industries. To improve the efficiency of evaporation, one of the most feasible methods is to localize heat at the top water layer rather than heating the bulk water. In this work, the mixture of purely light absorptive plasmonic nanostructures such as gold nanoparticles and purely scattering particles (polystyrene nanoparticles) are employed to confine the incident light at the top of the solution and convert light to heat. Different concentrations of both the light absorbing centers and the light scattering centers were evaluated and the evaporation performance can be largely enhanced with the balance between absorbing centers and scattering centers. The findings in this study not only provide a new way to improve evaporation efficiency in plasmonic particle-based solution, but also shed lights on the design of new solar-driven localized evaporation systems.
机译:该报告研究了通过分离的光吸收颗粒(等离子体吸收剂)和散射颗粒(聚苯乙烯纳米颗粒)来增强局部蒸发。蒸发被认为是现代工业中最重要的相变过程之一。为了提高蒸发效率,最可行的方法之一是将热量集中在顶部水层,而不是加热散装水。在这项工作中,采用纯光吸收性等离子纳米结构(例如金纳米颗粒)和纯散射颗粒(聚苯乙烯纳米颗粒)的混合物将入射光限制在溶液顶部并将光转换为热量。评估了光吸收中心和光散射中心的不同浓度,并且通过吸收中心和散射中心之间的平衡可以大大提高蒸发性能。这项研究的发现不仅为提高基于等离子粒子溶液的蒸发效率提供了一种新方法,而且为新型太阳能驱动的局部蒸发系统的设计提供了参考。

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