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A facile strategy for the fabrication of a bioinspired hydrophilic-superhydrophobic patterned surface for highly efficient fog-harvesting

机译:用于高效生雾的生物启发性亲水超疏水图案化表面的制造简便策略

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摘要

Fog water collection represents a meaningful effort in the places where regular water sources, including surface water and ground water, are scarce. Inspired by the amazing fog water collection capability of Stenocara beetles in the Namib Desert and based on the recent work in biomimetic water collection, this work reported a facile, easy-to-operate, and low-cost method for the fabrication of hydrophilic-superhydrophobic patterned hybrid surface toward highly efficient fog water collection. The essence of the method is incorporating a (super)hydrophobically modified metal-based gauze onto the surface of a hydrophilic polystyrene (PS) flat sheet by a simple lab oven-based thermal pressing procedure. The produced hybrid patterned surfaces consisted of PS patches sitting within the holes of the metal gauzes. The method allows for an easy control over the pattern dimension (e.g., patch size) by varying gauze mesh size and thermal pressing temperature, which is then translated to an easy optimization of the ultimate fog water collection efficiency. Given the low-cost and wide availability of both PS and metal gauze, this method has a great potential for scaling-up. The results showed that the hydrophilic-superhydrophobic patterned hybrid surfaces with a similar pattern size to Stenocara beetles’s back pattern produced significantly higher fog collection efficiency than the uniformly (super)hydrophilic or (super)hydrophobic surfaces. This work contributes to general effort in fabricating wettability patterned surfaces and to atmospheric water collection for direct portal use.
机译:在缺乏地表水和地下水等常规水源的地方,收集雾水是一项有意义的工作。灵感来自纳米布沙漠中的球形甲虫的惊人的雾水收集能力,并基于最近的仿生水收集工作,这项工作报告了一种简便,易于操作且低成本的亲水性-超疏水性制造方法图案化的混合表面朝向高效雾水收集。该方法的本质是通过简单的基于实验室烘箱的热压工艺将(超)疏水改性的金属基纱布掺入亲水性聚苯乙烯(PS)平板的表面。产生的混合图案表面由位于金属丝网孔内的PS贴片组成。该方法允许通过改变纱网尺寸和热压温度来容易地控制图案尺寸(例如,贴剂尺寸),然后转化为最终雾水收集效率的简单优化。鉴于PS和金属丝网的低成本和广泛可用性,这种方法具有扩大规模的巨大潜力。结果表明,与超细角甲虫的背部图案大小相似的亲水-超疏水图案化杂化表面比均匀(超)亲水或(超)疏水表面产生的集雾效率高得多。这项工作有助于制造可湿性图案表面,并有助于直接入口使用的大气水收集。

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