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Fog-Harvesting Properties of Dryopteris marginata: Role of Interscalar Microchannels in Water-Channeling

机译:鳞翅目鱼类的雾气采集特性:标间微通道在水通道中的作用

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摘要

Several flora and fauna species found in arid areas have adapted themselves to collect water by developing unique structures and to intake the collected moisture. Apart from the capture of the moisture and fog on the surface, water transport and collection both play an important part in fog-harvesting systems as it prevents the loss of captured water through evaporation and makes the surface available for the capture of water again. Here, we report the remarkable fog collection and water-channeling properties of Dryopteris marginata. The surface of D. marginata has developed an integrated system of multiscale channels so that the water spreads quickly and is transported via these channels very efficiently. These integrated multiscale channels have also been replicated using a facile soft lithography technique to prepare biomimetic surfaces and it has been proved that it is the surface architecture that plays a role in the water transport rather than the material’s properties (waxes present on the surface of the leaves). Based on our studies, we infer that the microlevel hierarchy of the structures make the surface hydrophilic and the multiscale channels allow the efficient passage and transport of water. The understanding of the efficient and well-directed water transport and collection in D. marginata is expected to provide valuable insights to design efficient surfaces for fog-harvesting applications.
机译:在干旱地区发现的几种动植物物种已经适应了自身的需求,通过形成独特的结构来收集水和吸收收集的水分。除了捕获表面上的湿气和雾之外,水的运输和收集在雾收集系统中都起着重要的作用,因为它可以防止捕获的水因蒸发而损失,并使表面可再次用于捕获水。在这里,我们报告了鳞翅目毛鳞鱼的非凡的雾气收集和导水性能。 D.marginata的表面已经开发了一个多尺度通道的集成系统,因此水可以快速扩散并通过这些通道高效地传输。这些集成的多尺度通道也已使用便捷的软光刻技术复制以制备仿生表面,并且已经证明,表面结构在水的运输中起着重要的作用,而不是材料的特性(存在于表面的蜡)树叶)。根据我们的研究,我们推断出该结构的微观层次使表面具有亲水性,而多尺度通道使水得以有效地通过和输送。理解对缘缘小球藻的有效且定向良好的水的运输和收集的理解,有望为设计用于除雾应用的有效表面提供有价值的见解。

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