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A hierarchical mesh film with superhydrophobic and superoleophilic properties for oil and water separation

机译:具有超疏水和超亲油特性的分层网膜,用于油和水的分离

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摘要

Solid surfaces possessing both superhydrophobic and superoleophilic properties have attracted great interest for fundamental research and potential application. However, fabrication of the reported surfaces is usually time-consuming and the wetability of the surfaces could not be achieved to the desired level in rugged environments. Results: A hierarchical stainless steel mesh film comprising structures with three scales of roughness was synthesized by a simple chemical bath deposition method. After being modified with a low surface energy material e.g. Teflon, these films exhibit superhydrophobic and superoleophilic properties. In this study it was demonstrated that the unique properties of the as-prepared films match well with the requirements for the effective separation of oil and water mixtures. Conclusion: It was confirmed that the unique surface wetability of the surface is due to the cooperative effect of the hierarchical structures of the stainless steel mesh films and the natural low surface tension of Teflon. Furthermore, fabrication is simple and economic, and the surface exhibited robust durability even in a rugged environment.
机译:同时具有超疏水性和超亲油性的固体表面引起了人们对基础研究和潜在应用的极大兴趣。然而,所报道的表面的制造通常是耗时的,并且在恶劣的环境中不能将表面的润湿性达到期望的水平。结果:通过简单的化学浴沉积方法合成了包括具有三个粗糙度等级的结构的分层不锈钢网膜。用低表面能改性后的材料铁氟龙,这些薄膜表现出超疏水和超亲油性能。在这项研究中,证明了所制备薄膜的独特性能与有效分离油和水混合物的要求非常吻合。结论:证实了表面的独特表面润湿性是由于不锈钢网状薄膜的分层结构和特氟龙的天然低表面张力的协同作用所致。此外,制造简单且经济,并且即使在崎even的环境中,该表面也显示出坚固的耐久性。

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