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Superhydrophobic Natural and Artificial Surfaces—A Structural Approach

机译:超疏水的天然和人造表面—一种结构方法

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摘要

Since ancient times humans observed animal and plants features and tried to adapt them according to their own needs. Biomimetics represents the foundation of many inventions from various fields: From transportation devices (helicopter, airplane, submarine) and flying techniques, to sports’ wear industry (swimming suits, scuba diving gear, Velcro closure system), bullet proof vests made from Kevlar etc. It is true that nature provides numerous noteworthy models (shark skin, spider web, lotus leaves), referring both to the plant and animal kingdom. This review paper summarizes a few of “nature’s interventions” in human evolution, regarding understanding of surface wettability and development of innovative special surfaces. Empirical models are described in order to reveal the science behind special wettable surfaces (superhydrophobic /superhydrophilic). Materials and methods used in order to artificially obtain special wettable surfaces are described in correlation with plants’ and animals’ unique features. Emphasis is placed on joining superhydrophobic and superhydrophilic surfaces, with important applications in cell culturing, microorganism isolation/separation and molecule screening techniques. Bio-inspired wettability is presented as a constitutive part of traditional devices/systems, intended to improve their characteristics and extend performances.
机译:从远古时代开始,人类就观察到动植物的特征,并试图根据自己的需要对其进行适应。仿生技术代表了来自各个领域的许多发明的基础:从运输设备(直升机,飞机,潜艇)和飞行技术,到运动服装行业(游泳衣,水肺潜水装备,维可牢尼龙搭扣封闭系统),凯夫拉尔制造的防弹背心等的确,大自然提供了许多值得注意的模型(鲨鱼皮,蜘蛛网,荷叶),涉及植物和动物界。这篇综述文章总结了人类进化过程中的一些“自然干预”,涉及对表面润湿性的理解和创新特殊表面的开发。描述了经验模型以揭示特殊可湿性表面(超疏水/超亲水)背后的科学。结合人工和动物的独特功能,描述了用于人工获得特殊可湿性表面的材料和方法。重点放在连接超疏水和超亲水表面上,在细胞培养,微生物分离/分离和分子筛选技术中具有重要应用。生物启发的润湿性是传统设备/系统的组成部分,旨在改善其特性并扩展性能。

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