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Ni-based Plasmonic/Magnetic Nanostructures as Efficient Light Absorbers for Steam Generation

机译:基于Ni的等离子体/磁性纳米结构,作为蒸汽产生的有效光吸收剂

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摘要

Solar steam generation technologies have gained increasing attention due to their great potential for clean water generation with low energy consumption. The rational design of a light absorber that can maximize solar energy utilization is therefore of great importance. Here, the synthesis of Ni@C@SiO2 core-shell nanoparticles as promising light absorbers for steam generation by taking advantage of the plasmonic excitation of Ni nanoparticles, the broadband absorption of carbon, and the protective function and hydrophilic property of silica is reported. The nanoparticle-based evaporator shows an excellent photothermal efficiency of 91.2%, with an evaporation rate of 1.67 kg m(-2) h(-1). The performance can be further enhanced by incorporating the nanoparticles into a polyvinyl alcohol hydrogel to make a composite film. In addition, utilizing the magnetic property of the core-shell particles allows the creation of surface texture in the film by applying an external magnetic field, which helps increase surface roughness and further boost the evaporation rate to as high as 2.25 kg m(-2) h(-1).
机译:由于其具有低能耗的巨大潜力,太阳能蒸汽发电技术越来越受到了巨大的潜力。因此,可以最大化太阳能利用率的光吸收器的合理设计非常重要。这里,通过利用Ni纳米颗粒的偏振激发,将Ni @ SiO 2核烯壳纳米粒子作为蒸汽产生的有前景的光吸收剂,据报道了二氧化硅的宽带吸收以及二氧化硅的保护功能和亲水性。基于纳米粒子的蒸发器显示出优异的光热效率为91.2%,蒸发速率为1.67kg m(-2)h(-1)。通过将纳米颗粒掺入聚乙烯醇水凝胶中以制备复合膜,可以进一步增强性能。另外,利用芯壳颗粒的磁性允许通过施加外部磁场产生表面纹理,这有助于增加表面粗糙度并进一步将蒸发速率提高到高达2.25千克(-2) )h(-1)。

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