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Facile fabrication of high-efficiency near-infrared absorption film with tungsten bronze nanoparticle dense layer

机译:钨青铜纳米粒子致密层的高效制备近红外吸收膜

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摘要

An excellent transparent film with effective absorption property in near-infrared (NIR) region based on cesium-doped tungsten oxide nanoparticles was fabricated using a facile double layer coating method via the theoretical considerations. The optical performance was evaluated; the double layer-coated film exhibited 10% transmittance at 1,000 nm in the NIR region and over 80% transmittance at 550 nm in the visible region. To optimize the selectivity, the optical spectrum of this film was correlated with a theoretical model by combining the contributions of the Mie-Gans absorption-based localized surface plasmon resonance and reflections by the interfaces of the heterogeneous layers and the nanoparticles in the film. Through comparison of the composite and double layer coating method, the difference of the nanoscale distances between nanoparticles in each layer was significantly revealed. It is worth noting that the nanodistance between the nanoparticles decreased in the double layer film, which enhanced the optical properties of the film, yielding a haze value of 1% or less without any additional process. These results are very attractive for the nanocomposite coating process, which would lead to industrial fields of NIR shielding and thermo-medical applications.PACS78.67.Sc; 78.67.Bf; 81.15.-z
机译:基于理论上的考虑,采用一种简便的双层涂覆方法,制备了一种基于铯掺杂的氧化钨纳米粒子的,在近红外(NIR)区域具有有效吸收性能的优良透明薄膜。评估光学性能;双层涂膜在NIR区域的1,000nm处显示10%的透射率,在550nm的可见光区域显示80%以上的透射率。为了优化选择性,通过结合基于Mie-Gans吸收的局部表面等离振子共振的贡献和薄膜中异质层与纳米颗粒界面的反射,将该薄膜的光谱与理论模型相关联。通过复合涂层和双层涂层方法的比较,发现每层纳米颗粒之间的纳米级距离差异明显。值得注意的是,双层膜中纳米颗粒之间的纳米距离减小,这增强了膜的光学性能,在没有任何附加处理的情况下雾度值为1%或更小。这些结果对于纳米复合材料涂层工艺非常有吸引力,这将导致近红外屏蔽和热医学应用的工业领域。PACS78.67.Sc; 78.67.Bf; 81.15.-z

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