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Air Trapping Mechanism in Artificial Salvinia-Like Micro-Hairs Fabricated via Direct Laser Lithography

机译:直接激光平版印刷制造的类似人造鲑鱼微毛中的空气捕集机理

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摘要

Salvinia leaves represent an extraordinary example of how nature found a strategy for the long term retainment of air, and thus oxygen, on a surface, the so-called ‘Salvinia effect’, thanks to the peculiar three-dimensional and hierarchical shape of the hairs covering the leaves. Here, starting from the natural model, we have microfabricated hairs inspired by those present on the Salvinia molesta leaves, by means of direct laser lithography. Artificial hairs, like their natural counterpart, are composed of a stalk and a crown-like head, and have been reproduced in the microscale since this ensures, if using a proper design, an air-retaining behavior even if the bulk structural material is hydrophilic. We have investigated the capability of air retainment inside the heads of the hairs that can last up to 100 h, demonstrating the stability of the phenomenon. For a given dimension of the head, the greater the number of filaments, the greater the amount of air that can be trapped inside the heads since the increase in the number of solid–air interfaces able to pin the liquid phase. For this reason, such type of pattern could be used for the fabrication of surfaces for controlled gas retainment and gas release in liquid phases. The range of applications would be quite large, including industrial, medical, and biological fields.
机译:Salvinia的叶子代表了自然界如何找到一种策略来长期保留空气,从而在表面上保留氧气,从而形成一种所谓的“ Salvinia效应”,这是一个非凡的例子,这要归功于奇特的毛发三维层次结构覆盖树叶。在这里,从自然模型开始,我们通过直接激光光刻技术,从Salvinia molesta叶上存在的毛发中提取了微型毛发。人造毛,像它们的天然毛一样,由茎和冠状的头组成,并已在微观尺度上复制,因为即使使用适当的设计,这也可以确保保持空气的行为,即使主体结构材料是亲水性的也是如此。 。我们已经研究了在头发的头部保留空气的能力,这种能力可以持续长达100小时,证明了这种现象的稳定性。对于给定尺寸的喷头,细丝数量越多,由于能够固定液相的固-气界面数量增加,可以在喷头内部截留的空气量就越大。由于这个原因,这种类型的图案可以用于制造表面,以控制液相中的气体保留和气体释放。应用范围将非常大,包括工业,医学和生物领域。

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