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Biomimetic gyroid nanostructures exceeding their natural origins

机译:仿生螺旋体纳米结构超出其天然来源

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摘要

Using optical two-beam lithography with improved resolution and enhanced mechanical strength, we demonstrate the replication of gyroid photonic nanostructures found in the butterfly Callophrys rubi. These artificial structures are shown to have size, controllability, and uniformity that are superior to those of their biological counterparts. In particular, the elastic Young’s modulus of fabricated nanowires is enhanced by up to 20%. As such, the circular dichroism enabled by the gyroid nanostructures can operate in the near-ultraviolet wavelength region, shorter than that supported by the natural butterfly wings of C. rubi. This fabrication technique provides a unique tool for extracting three-dimensional photonic designs from nature and will aid the investigation of biomimetic nanostructures.
机译:使用具有改善的分辨率和增强的机械强度的光学两束光刻,我们证明了在蝴蝶Callophrys rubi中发现的回旋光子纳米结构的复制。这些人造结构的尺寸,可控性和均匀性均优于其生物学对应物。特别是,制成的纳米线的弹性杨氏模量提高了20%。这样,由螺旋状纳米结构实现的圆形二向色性可以在近紫外波长区域内操作,比由红景天的天然蝴蝶翅膀所支持的短。这种制造技术为从自然界中提取三维光子设计提供了独特的工具,并将有助于仿生纳米结构的研究。

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