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Structural coloration of chitosan-cationized cotton fabric using photonic crystals

机译:使用光子晶体的壳聚糖阳离子棉织物的结构着色

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In this work, poly (styrene-methyl methacrylate-acrylic acid) P(St-MMA-AA) composite nanospheres were deposited onto chitosan-cationized woven cotton fabrics followed by a second layer of chitosan. The deposited photonic crystals (PCs) on the fabrics were evaluated for coating efficiency and resistance, chemical analysis and color variation by optical and SEM microscopy, ATR-FTIR, diffuse reflectance spectroscopy and washing fastness. Chitosan deposition on cotton fabric provided cationic groups on the fiber surface promoting electrostatic interaction with photonic crystals. SEM images of the washed samples indicate that the PCs are firmly coated on the cotton surface only in the chitosan treated sample. The photonic nanospheres show an average diameter of 280 nm and display a face-centered cubic close-packing structure with an average thickness of 10 μm. A further chitosan post-treatment enhances color yield of the samples due to the chitosan transparent covering layer that induce bright reflections where the angles of incidence and reflection are the same. After washing, no photonic crystal can be detected on control fabric surface. However, the sample that received a chitosan post-treatment showed a good washing fastness maintaining a reasonable degree of iridescence. Chitosan fills the spaces between the polymer spheres in the matrix stabilizing the photonic structure. Sizeable variations in lattice spacing will allow color variations using more flexible non-close-packed photonic crystal arrays in chitosan hydrogels matrices.
机译:在这项工作中,将聚(苯乙烯 - 甲基丙烯酸甲酯 - 丙烯酸)P(ST-MMA-AA)复合纳米球沉积在壳聚糖阳离子化的棉织物上,然后沉积在壳聚糖第二层。通过光学和SEM显微镜,ATR-FTIR,弥漫反射光谱和清洗牢度评估织物上的沉积光子晶体(PC)用于涂覆效率和抗性,化学分析和颜色变化。在棉织物上壳聚糖沉积在纤维表面上提供了促进与光子晶体的静电相互作用的阳离子基团。洗涤样品的SEM图像表明PC仅在壳聚糖处理的样品中牢固地涂覆在棉表面上。光子纳米球的平均直径为280nm,并且显示平均厚度为10μm的面为中心的立方闭合填充结构。由于壳聚糖透明覆盖层,进一步的壳聚糖治疗后处理可增强样品的颜色产量,该壳聚糖透明覆盖层诱导亮度的亮度和反射的角度是相同的。洗涤后,可以在控制织物表面上检测到光子晶体。然而,接受壳聚糖后治疗的样品显示出良好的洗涤牢度,保持合理的彩虹度。壳聚糖在稳定光子结构的基质中填充聚合物球之间的空间。格子间距的相当性变化将允许在壳聚糖水凝胶基质中使用更柔性的非紧密填充光子晶体阵列的颜色变化。

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