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Preparation of superhydrophobic/superoleophilic copper coated titanium mesh with excellent ice-phobic and water-oil separation performance

机译:具有优异的疏冰和水油分离性能的超疏水/超亲油铜涂层钛网的制备

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摘要

The development of advanced materials with superwettability has captured much research interest, because of the increasing environmental concerns and technological requirements. In this work, a titanium mesh coated with copper microanostructures was fabricated via chemical immersion and annealing treatment. The resulting mesh surface consists of titanium and copper oxides with special dendritic and island-like micro-nano binary structures and exhibited remarkable superhydrophobic/ superoleophilic property. The superhydrophobic/superoleophilic Ti mesh (SSTM) proved to be efficient for the separation of various water-oil mixtures and exhibited an excellent reusability in repeating separation cycles of water-carbon tetrachloride. Moreover, the SSTM sample displayed great icephobic property including ice-over delay and low ice adhesion. The self-cleaning properties of the SSTM sample were demonstrated using simulated chalk powder that can be easily washed off by injecting water droplets. It also exhibited superior stability in air atmosphere or water over months and great durability under a continuous tap-water flow impacting or abrasion test.
机译:由于对环境的关注和技术要求日益提高,具有超润湿性的先进材料的开发引起了很多研究兴趣。在这项工作中,通过化学浸没和退火处理,制成了涂有铜微/纳米结构的钛网。所得的网状表面由具有特殊树枝状和岛状微纳米二元结构的钛和铜氧化物组成,并表现出显着的超疏水/超亲油性能。事实证明,超疏水/超亲油性Ti网(SSTM)可有效分离各种水-油混合物,并在重复水-四氯化碳的分离循环中显示出极好的可重复使用性。此外,SSTM样品显示出极好的疏冰性,包括结冰延迟和低冰粘附性。使用模拟粉笔粉可证明SSTM样品的自清洁性能,该粉笔粉可通过注入水滴轻松洗掉。它在空气或水中在数月之内也表现出卓越的稳定性,并且在连续的自来水流冲击或磨耗试验下具有出色的耐久性。

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