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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Replication of homologous optical and hydrophobic features by templating wings of butterflies Morpho menelaus
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Replication of homologous optical and hydrophobic features by templating wings of butterflies Morpho menelaus

机译:通过模板化蝴蝶翅膀的复制来复制同源的光学和疏水特征

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摘要

The revealed "Christmas-tree" nanostructures in the cover and ground scales of the butterfly Morpho menelaus are responsible for the observed iridescent blue color and the diffraction pattern of the wings. The aspect ratio of nanostructures in ground scales is more than 5 times higher than that of Morpho peleides cover scales. Inspired by the butterfly, artificial nanostructures are fabricated successfully by templating the scales imbricating in the wings with low-temperature atomic layer deposition (ALD) methods. Through structural characterizations and optical measurements, we reveal that the hybrid structures inherit not only the morphology of the scales with high fidelity but also the homologous optical features including iridescence and diffraction. Besides, water contact angle measurements on both uncoated and coated wings show hydrophobic results. The integration of bio-templates and ALD methods provide a potential route to fabricate the nanostructures with multi-functional features, which may be especially crucial in the applications of innovative functional optical devices.
机译:蝴蝶Morpho menelaus的覆盖和地面鳞片中显露的“圣诞树”纳米结构是观察到的虹彩蓝色和机翼衍射图案的原因。纳米尺度的纳米结构的纵横比比Morpho peleides覆盖尺度的纵横比高5倍以上。受到蝴蝶的启发,通过用低温原子层沉积(ALD)方法对翅膀中的鳞片进行模板化,成功地制造了人工纳米结构。通过结构表征和光学测量,我们发现混合结构不仅继承了具有高保真度的鳞片的形态,而且还继承了包括虹彩和衍射在内的同源光学特征。此外,在未涂覆和涂覆的机翼上的水接触角测量都显示出疏水性结果。生物模板和ALD方法的集成为制造具有多功能功能的纳米结构提供了一条潜在途径,这在创新功能光学设备的应用中可能尤其重要。

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