首页> 美国卫生研究院文献>Journal of the Royal Society Interface >Biomimicry of iridescent patterned insect cuticles: comparison of biological and synthetic cholesteric microcells using hyperspectral imaging
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Biomimicry of iridescent patterned insect cuticles: comparison of biological and synthetic cholesteric microcells using hyperspectral imaging

机译:呈虹彩图案化昆虫切割色素的生物化:使用过高光谱成像的生物和合成胆甾型微胶体的比较

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摘要

Biological systems inspire the design of multifunctional materials and devices. However, current synthetic replicas rarely capture the range of structural complexity observed in natural materials. Prior to the definition of a biomimetic design, a dual investigation with a common set of criteria for comparing the biological material and the replica is required. Here, we deal with this issue by addressing the non-trivial case of insect cuticles tessellated with polygonal microcells with iridescent colours due to the twisted cholesteric organization of chitin fibres. By using hyperspectral imaging within a common methodology, we compare, at several length scales, the textural, structural and spectral properties of the microcells found in the two-band cuticle of the scarab beetle Chrysina gloriosa with those of the polygonal texture formed in flat films of cholesteric liquid crystal oligomers. The hyperspectral imaging technique offers a unique opportunity to reveal the common features and differences in the spectral-spatial signatures of biological and synthetic samples at a 6-nm spectral resolution over 400 nm–1000 nm and a spatial resolution of 150 nm. The biomimetic design of chiral tessellations is relevant to the field of non-specular properties such as deflection and lensing in geometric phase planar optics.
机译:生物系统激发多功能材料和设备的设计。然而,当前的合成复制品很少捕获的结构在天然材料所观察到的复杂的范围内。此前有仿生设计的定义,需要用比较的生物材料一套共同的标准,一个双反调查和副本。在这里,我们处理这个问题通过解决与虹彩多边形镶嵌微昆虫表皮的不平凡的情况下,由于甲壳素纤维的扭曲的胆甾组织。通过使用共同的方法中高光谱成像,我们比较,在几个长度尺度,纹理,在圣甲虫甲虫Chrysina嘉兰属的双带表皮与所述多边形的纹理的形成在平膜中发现的微结构和光谱性质的胆甾型液晶低聚物。超光谱成像技术提供了一个独特的机会在超过400纳米1000nm的6纳米的光谱分辨率和150nm的空间分辨率,以揭示在生物和合成样品的谱空间特征的共同特征和区别。手性镶嵌的仿生设计是相关的非镜面性质,例如在几何相位平面光学偏转和透镜的领域。

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