首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Facile Fabrication of Slippery Lubricant-Infused CuO-Coated Surfaces with Different Morphologies for Efficient Water Collection and Excellent Slippery Stability
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Facile Fabrication of Slippery Lubricant-Infused CuO-Coated Surfaces with Different Morphologies for Efficient Water Collection and Excellent Slippery Stability

机译:适用于不同形态的光滑润滑剂注入的Cuo涂层表面的舒适性,具有高效的水收集和优异的滑稳定性

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摘要

How to prepare multifunctional surfaces with high nucleation density and fast droplet removal during droplet condensation remains a challenge. It is believed that a water droplet on a superhydrophobic surface (SHS) in the Cassie state is inclined to convert to the Wenzel state under high-pressure or high-humidity conditions, which results in the pinning effect. Hence, it is necessary to form thermodynamically stable lubricant-infused surfaces (LISs) to be applied in water condensation, especially under extreme working conditions. In this work, CuO LISs with two different morphologies (chrysanthemum-like and dandelion-like structures) in the slippery state were prepared and the effect of surface morphology on water harvesting behavior was investigated. The results indicated that dandelion-like CuO consisting of nanoneedles exhibited inferior water harvesting behavior compared to chrysanthemum-like CuO consisting of nanolamellas due to worse lubricating oil loss. Furthermore, the strong intermolecular forces between the perfluoropolyether (PFPE) lubricating oil and perfluorodecanethiol (PFDT)-modified coating resulted in a durable lubricating layer, which exhibited favorable anti-icing, anticorrosion, and liquid repellency even under strong acid and alkali conditions, high shear force rate up to 7000 rpm, and long-time ultraviolet light irradiation for 12 h. This work paves the path for efficient droplet nucleation and removal, which has potential in water harvesting in arid regions and water condensation for power generation.
机译:如何制备具有高成核密度的多功能表面,并且在液滴冷凝期间的快速滴加仍然是一个挑战。据信,Cassie状态的超疏水表面(SHS)上的水滴倾向于在高压或高湿度条件下转化为温革状态,这导致钉扎效果。因此,有必要形成热力学稳定的润滑剂 - 注入表面(LISS)以在水凝结中施加,特别是在极端工作条件下。在这项工作中,制备了CuO,具有两种不同形态(菊花样和蒲公英样结构)的光滑状态,并研究了表面形态对水收集行为的影响。结果表明,与菊花样CuO组成的纳米粉末组成的纳尼鳞片组成的蒲公英的CuO表现出较差的润滑油损失。此外,全氟聚醚(PFPE)润滑油和全氟二烷硫醇(PFDT)制水合涂层之间的强分子力导致耐用的润滑层,即使在强酸和碱条件下,也表现出良好的抗糖浆,防腐和液体排斥性,高剪切力率高达7000rpm,长时间紫外线照射12小时。这项工作铺设了有效液滴成核和去除的路径,这在干旱地区和发电的水冷凝中具有潜力。

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