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Designing robust underwater superoleophobic microstructures on copper substrates

机译:设计的水下superoleophobic微观结构对铜基板

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摘要

Recently, surfaces with a robust underwater superoleophobicity have attracted much attention. Although it is recognized that stable microstructures are significant for such surfaces, a clear picture of how microstructural features such as morphology, size, etc. influence their own stability and related wettability is still missing. Herein, three low adhesive underwater superoleophobic copper surfaces with different microstructures (hemispheric, pinecone-like, and honeycomb) were first prepared, and then the stability of these microstructures was examined by a series of physical and chemical damage experiments (sand grain abrasion, corrosion in acid/base solutions, etc.). The results indicate that the hemispheric microstructure is more stable than the other two microstructures and the corresponding surface has a robust underwater superoleophobicity. Theoretical simulation analysis further confirms the experimental results and reveals that different stabilities are ascribed to different stress distributions on these microstructures under an external force due to distinct microstructure shapes. Furthermore, based on the same design strategy, a robust underwater superoleophobic oil/water separation copper mesh film was also prepared. This work provides an insight into the effect of microstructural features on the stability and related underwater oil-repellent properties of superoleophobic copper surfaces, and could provide us with some fresh design ideas for robust superwetting surfaces.
机译:最近,表面强大的水下superoleophobicity吸引了太多的关注。虽然认识到稳定微观结构等非常重要表面微观结构的清晰图像特性,比如形态、大小等的影响自己的稳定和相关的润湿性失踪。水下superoleophobic铜表面不同的微观结构(半球,pinecone-like和蜂窝)是第一个准备,然后这些的稳定性微观结构是由一系列的检查物理和化学损伤实验(砂谷物磨损,腐蚀酸/碱的解决方案,等等)。微观结构比其他两个更稳定微观结构和相应的表面一个健壮的水下superoleophobicity。理论仿真分析进一步证实实验结果和显示不同的稳定性被归结为不同对这些微观结构应力分布由于不同的下一个外力微观结构的形状。同样的设计策略,一个健壮的水下superoleophobic油/水分离铜网电影也准备好了。洞察微观结构的影响功能的稳定性和相关的水下superoleophobic的拒油性能铜表面,可以为我们提供一些superwetting强劲的新设计理念表面。

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