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Designing Composite Coatings That Provide a Dual Defense against Fouling

机译:设计能够提供双重防结垢功能的复合涂料

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Inspired by marine organisms that utilize spines and shape changes to prevent the biofouling of their surfaceS, we use computational modeling to design a gel-based composite coating that provides a two-pronged defense mechanism against the fouling of the underlying substrate. Using dissipative particle dynamics (DPD) Simulations, we construct a coating that encompasses rigid posts embedded in a thermoresponsive gel, which exhibits a lower critical solution temperature (LCST). When the gel is heated above its LCST, it collapses to expose the buried posts, which act as spines or spikes that prevent a solid particle from penetrating the layer: Moreover, we show that an imposed shear flow readily dislodges these particles and Washes them away from the coated substrate. As the system dissipates heat and cools, the LCST gel expands, and this dynamic morphological change can also be harnessed to dislodge the adsorbed particles. Thus, both the exposed posts and the swelling gels tan provide barriers to the penetration of particulates through the coating. In this manner, the coating provides a dual mechanism against the fouling of the substrate. This physical approach can be particularly beneficial because it does not require the release of any chemical substances that could have detrimental consequences to the environment.
机译:受海洋生物的启发,这些海洋生物利用棘刺和形状变化来防止表面的生物结垢,因此我们使用计算模型设计了一种基于凝胶的复合涂层,该涂层提供了两方面的防御机制来抵抗底层基材的结垢。使用耗散粒子动力学(DPD)模拟,我们构建了一种涂层,该涂层包含嵌入在热响应性凝胶中的刚性柱,该柱具有较低的临界溶液温度(LCST)。当凝胶被加热到高于LCST时,它会塌陷以暴露出掩埋的柱子,这些柱子充当刺或尖峰,阻止固体颗粒渗入该层:此外,我们显示强加的剪切力很容易将这些颗粒清除并洗掉。从涂覆的基材。随着系统的散热和冷却,LCST凝胶膨胀,这种动态形态学变化也可以被利用来去除吸附的颗粒。因此,暴露的柱和膨胀的凝胶棕褐色都为微粒穿透涂层提供了屏障。以这种方式,涂层提供了防止基材结垢的双重机理。这种物理方法可能特别有益,因为它不需要释放可能对环境造成不利影响的任何化学物质。

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