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Pillars of Life: Is There a Relationship between Lifestyle Factors and the Surface Characteristics of Dragonfly Wings?

机译:生命的支柱:生活方式因素与蜻蜓翅膀的表面特征之间是否有关系?

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Dragonfly wings are of great interest to researchers investigating biomimetic designs for antiwetting and antibacterial surfaces. The waxy epicuticular layer on the membrane of dragonfly wings possesses a unique surface nanoarchitecture that consists of irregular arrays of nanoscale pillars. This architecture confers superhydrophobic, self-cleaning, antiwetting, and antibiofouling behaviors. There is some evidence available that suggests that lifestyle factors may have influenced the evolution of the wing nanostructures and, therefore, the resulting properties of the wings; however, it appears that no systematic studies have been performed that have compared the wing surface features across a range of dragonfly species. Here, we provided a comparison of relevant wing surface characteristics, including chemical composition, wettability, and nanoarchitecture, of seven species of dragonfly from three families including Libellulidae , Aeshnidae , and Gomphidae . The characteristic nanopillar arrays were found to be present, and the chemical composition and the resultant wing surface superhydrophobicity were found to be well-conserved across all of the species studied. However, subtle differences were observed between the height, width, and density of nanofeatures and water droplet bouncing behavior on the wing surfaces. The results of this research will contribute to an understanding of the physical and chemical surface features that are optimal for the design of antiwetting and antibacterial surfaces.
机译:蜻蜓翅膀对于研究仿生设计的抗湿和抗菌表面的研究人员非常感兴趣。蜻蜓翅膀的膜上的蜡状表皮层具有独特的表面纳米结构,该结构由不规则排列的纳米级柱组成。这种体系结构具有超疏水,自清洁,防湿和防污性能。有一些证据表明,生活方式因素可能影响了机翼纳米结构的演变,因此也影响了机翼的最终性能。但是,似乎没有进行过系统的研究来比较各种蜻蜓物种的机翼表面特征。在这里,我们提供了来自三个科的七个蜻蜓的相关机翼表面特征的比较,包括化学成分,可湿性和纳米结构,这些科包括Libellulidae,Aeshnidae和Gomphidae。发现存在特征性的纳米柱阵列,并且发现在所研究的所有物种中化学组成和所得的机翼表面超疏水性均保持良好。但是,在纳米特征的高度,宽度和密度与机翼表面的水滴弹跳行为之间观察到细微的差异。这项研究的结果将有助于对物理和化学表面特征的理解,这些表面特征对于设计抗湿和抗菌表面是最佳的。

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