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Tough and Variable-Band-Gap Photonic Hydrogel Displaying Programmable Angle-Dependent Colors

机译:韧性和带隙可变的光子水凝胶,显示可编程的角度相关颜色

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One-dimensional photonic crystals or multilayer films produce colors that change depending on viewing and light illumination angles because of the periodic refractive index variation in alternating layers that satisfy Bragg’s law. Recently, we have developed multilayered photonic hydrogels of two distinct bulk geometries that possess an alternating structure of a rigid polymeric lamellar bilayer and a ductile polyacrylamide (PAAm) matrix. In this paper, we focus on fabrication of composite gels with variable photonic band gaps by controlling the PAAm layer thickness. We report programmable angle-dependent and angle-independent structural colors produced by composite hydrogels, which is achieved by varying bulk and internal geometries. In the sheet geometry, where the lamellae are aligned parallel to the sheet surface, the photonic gel sheet exhibits strong angle-dependent colors. On the other hand, when lamellae are coaxially aligned in a cylindrical geometry, the gel rod exhibits an angle-independent color, in sharp contrast with the gel sheet. Rocking curves have been constructed to justify the diverse angle-dependent behavior of various geometries. Despite varying the bulk geometry, the tunable photonic gels exhibit strong mechanical performances and toughness. The distinct angle dependence of these tough photonic materials with variable band gaps could benefit light modulation in displays and sensor technologies.
机译:一维光子晶体或多层膜产生的颜色会根据视角和光照角度而变化,这是因为交替层中的周期性折射率变化符合布拉格定律。最近,我们开发了具有两种不同本体几何形状的多层光子水凝胶,它们具有刚性聚合物层状双层和韧性聚丙烯酰胺(PAAm)基质的交替结构。在本文中,我们专注于通过控制PAAm层厚度来制造具有可变光子带隙的复合凝胶。我们报告了复合水凝胶产生的可编程角度相关和角度独立的结构颜色,这是通过改变体积和内部几何形状来实现的。在薄板几何形状中,薄板平行于薄板表面排列,光子凝胶薄板显示出强烈的角度依赖性颜色。另一方面,当薄片以圆柱几何形状同轴排列时,凝胶棒表现出与角度无关的颜色,与凝胶片形成鲜明对比。构造了摇摆曲线以证明各种几何形状与角度有关的各种行为是合理的。尽管体积几何形状有所变化,但可调光子凝胶仍具有很强的机械性能和韧性。这些坚韧的光子材料具有可变的带隙,其独特的角度依赖性可以有益于显示器和传感器技术中的光调制。

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