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首页> 外文期刊>Crystal growth & design >Biogenic guanine crystals from the skin of fish may be designed to enhance light reflectance
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Biogenic guanine crystals from the skin of fish may be designed to enhance light reflectance

机译:鱼皮中的生物鸟嘌呤晶体可以提高光反射率

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The metallic luster from the skin of fish is due to a photonic crystal system composed of multilayer stacks of cytoplasm and crystals. The crystals are described as thin (50-100 nm) plates of guanine, with no reference to their hydration state. We established through X-ray diffraction that their crystal structure is that of anhydrous guanine. We noted that their crystal structure-function relationship is exceptional compared to other purines with similar molecular stacking of the crystal structure. These elongate in the direction of molecular stacking, in contrast to the biogenic anhydrous guanine crystals whose smallest dimension is in the stacking direction. On the basis of the known crystal structure of anhydrous guanine, theoretical growth morphology was calculated. These calculations predict crystals elongated in the direction of the molecular stacking. The exposed molecular plane of the biogenic crystals is the (102) plane, which is composed of densely packed H-bonded guanine molecules. It is known that the in-plane polarizability of guanine molecules is significantly higher than the direction perpendicular to the molecular plane, most likely causing anisotropy of the crystals refractive index. It is therefore conceivable that the unique morphology observed in crystals from the skin of fish is designed to enhance their light reflective properties.
机译:鱼皮的金属光泽归因于光子晶体系统,该系统由细胞质和晶体的多层堆叠组成。所述晶体被描述为鸟嘌呤的薄板(50-100nm),而与它们的水合状态无关。通过X射线衍射,我们确定它们的晶体结构是无水鸟嘌呤的晶体结构。我们注意到,与其他具有类似晶体结构分子堆积的嘌呤相比,它们的晶体结构与功能之间的关系非常出色。与最小尺寸在堆叠方向上的生物无水鸟嘌呤晶体相反,它们在分子堆叠的方向上伸长。基于无水鸟嘌呤的已知晶体结构,计算了理论生长形态。这些计算预测了在分子堆叠方向上拉长的晶体。生物晶体的暴露分子平面是(102)平面,由密集堆积的H键鸟嘌呤分子组成。已知鸟嘌呤分子的面内极化率显着高于垂直于分子平面的方向,极有可能引起晶体折射率的各向异性。因此可以想象,从鱼皮的晶体中观察到的独特形态旨在增强其光反射性能。

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