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YSZ Hollow Sphere Photonic Glasses: Tailoring Optical Properties for Highly Saturated Non-Iridescent Structural Coloration

机译:YSZ空心球光子玻璃:调整光学特性以实现高度饱和的非虹彩结构着色

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摘要

Non-iridescent structural colors can be obtained by the disordered arrangement of monodisperse spheres, a so-called photonic glass (PhG), in which the structure is designed to reflect or transmit light at specific wavelengths depending on the desired color. PhGs are possible alternatives for conventional pigments due to their wide viewing angle, stability against photobleaching, and environment-friendly fabrication. However, structural colors generated by common full-sphere PhGs reported in the literature show only low saturation. The recently developed PhG structure based on yttria-stabilized zirconia (YSZ) hollow spheres displays highly saturated blue structural color for tailored parameters. In this case, structural color originates from a sharp transition in the reflection spectrum generated by the specific design of the YSZ hollow sphere PhG fabricated via co-deposition. Here, a systematic study of the parameters resulting in highly saturated structural color, namely YSZ shell thickness, pore size, and film thickness, is presented. This work shows that by tailoring these parameters, the sharpness, spectral position, and reflectance of the transition can be tuned individually. Based on the gained knowledge, YSZ hollow sphere PhG with tailored optical properties can be easily fabricated.
机译:可以通过无序排列的单分散球体(即所谓的光子玻璃(PhG))获得非虹彩结构色,其中,根据所需的颜色,结构可以反射或透射特定波长的光。 PhG由于其宽视角,对光漂白的稳定性和环境友好的制造方式,因此是常规颜料的替代品。然而,文献中报道的由普通全球形PhG产生的结构颜色仅显示出低饱和度。最近开发的基于氧化钇稳定的氧化锆(YSZ)空心球的PhG结构显示出高度饱和的蓝色结构颜色,可用于定制参数。在这种情况下,结构颜色源自反射光谱的急剧转变,该反射光谱是由通过共沉积制备的YSZ中空球体PhG的特定设计所产生的。在这里,对导致高度饱和的结构颜色的参数(即YSZ壳厚度,孔径和膜厚度)进行系统研究。这项工作表明,通过调整这些参数,可以分别调整过渡的清晰度,光谱位置和反射率。基于所获得的知识,可以容易地制造具有定制光学特性的YSZ中空球体PhG。

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