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Quantifying the saturation of structural color from thin film polymeric photonic crystals

机译:量化薄膜聚合光子晶体的结构色饱和度

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A range of color quantification methods are developed and applied to characterize the structural color of thin film photonic crystals known as polymer opals. Order is progressively induced within these engineered nanostructures, and three-dimensional reflectivity measurements allow for the 'scattering cone' to be located and analyzed. Reported are observations that demonstrate how the chromatic properties of resultant structural color change as functions of both viewing angle and sample ordering. These measurements are mapped to a CIE 1931 color space, from which chromaticity metrics are readily extracted. The hue of structural coloration is shown to tune towards longer wavelengths by progressively improved structural order, and an improvement in color saturation can be observed as order is induced. In understanding how structural color can be quantified and manipulated, large-area photonic structures have potential for application as coatings and sensors, as well as smart fabrics and many other optical devices.
机译:开发了多种颜色定量方法,并将其应用于表征被称为聚合物蛋白石的薄膜光子晶体的结构颜色。在这些工程化的纳米结构中逐步诱导出阶次,并且三维反射率测量允许对“散射锥”进行定位和分析。报告的观察结果表明,所得结构颜色的色度如何随视角和样品顺序变化而变化。这些测量值被映射到CIE 1931颜色空间,从中可以轻松提取色度度量。通过逐渐改善结构顺序,显示出结构着色的色调可向更长的波长调谐,并且随着顺序的诱导,可以观察到色彩饱和度的改善。在了解如何量化和处理结构颜色时,大面积光子结构具有作为涂料和传感器以及智能织物和许多其他光学设备的潜力。

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