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Design of surfaces for controlling hard and soft fouling

机译:控制硬质污垢和柔软污垢的表面设计

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In this review, we present a framework to guide the design of surfaces which are resistant to solid fouling, based on the modulus and length scale of the fouling material. Solid fouling is defined as the undesired attachment of solid contaminants including ice, clathrates, waxes, inorganic scale, polymers, proteins, dust and biological materials. We first provide an overview of the surface design approaches typically applied across the scope of solid fouling and explain how these disparate research efforts can be united to an extent under a single framework. We discuss how the elastic modulus and the operating length scale of a foulant determine its ability or inability to elastically deform surfaces. When surface deformation occurs, minimization of the substrate elastic modulus is critical for the facile de-bonding of a solid contaminant. Foulants with low modulus or small deposition sizes cannot deform an elastic bulk material and instead de-bond more readily from surfaces with chemistries that minimize their interfacial free energy or induce a particular repellant interaction with the foulant. Overall, we review reported surface design strategies for the reduction in solid fouling, and provide perspective regarding how our framework, together with the modulus and length scale of a foulant, can guide future antifouling surface designs.
机译:在本次审查中,我们提出了一个框架,以指导抗污垢材料的模量和长度尺度抵抗固体污垢的表面的框架。固体污染被定义为固体污染物的不希望的附着,包括冰,克拉汞,蜡,无机尺度,聚合物,蛋白质,灰尘和生物材料。我们首先举行概述了通常应用于稳定污染的范围的表面设计方法,并解释这些不同的研究努力如何在一个框架下达成联合国。我们讨论污垢的弹性模量和操作长度尺度如何确定其能力或无法弹性变形表面。当发生表面变形时,基板弹性模量的最小化对于固体污染物的容易脱粘至关重要。具有低模量或小沉积尺寸的污垢不能使弹性散装材料变形,而是从具有化学物质的表面更容易地脱粘,从而最小化其界面自由能量或诱导特定的避风剂与污垢相互作用。总体而言,我们审查了报告的表面设计策略,用于减少固体污垢,并提供关于我们的框架如何以及污垢的模量和长度等级的视角,可以引导未来的防污表面设计。

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