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Biomimetic water-collecting fabric with light-induced superhydrophilic bumps

机译:仿生集水织物,具有光诱导的超亲水性凸起

摘要

To develop an efficient water-collecting surface that integrates both fast water-capturing and easy drainage properties is of high current interest for addressing global water issues. In this work, a superhydrophobic surface was fabricated on cotton fabric via manipulation of both the surface roughness and surface energy. This was followed by a subsequent spray coating of TiO2 nanosol that created light-induced superhydrophilic bumps with a unique raised structure as a result of the interfacial tension of the TiO2 nanosol sprayed on the superhydrophobic fiber surface. These raised TiO2 bumps induce both a wettability gradient and a shape gradient, synergistically accelerating water coalescence and water collection. The in-depth study revealed that the quantity and the distribution of the TiO2 had a significant impact on the final water collection efficiency. This inexpensive and facilely fabricated fabric biomimicks the desert beetle's back and spider silk, which are capable of fog harvesting without additional energy consumption.
机译:开发一种集集快速集水和易排水性能于一体的高效集水表面,对于解决全球水问题具有极大的兴趣。在这项工作中,通过控制表面粗糙度和表面能,在棉织物上制造了超疏水表面。随后进行TiO2纳米溶胶的喷涂,这是由于喷涂在超疏水性纤维表面上的TiO2纳米溶胶的界面张力而产生具有独特凸起结构的光诱导超亲水性凸起。这些凸起的TiO2凸点同时引起了润湿性梯度和形状梯度,从而协同促进了水的聚结和集水。深入研究表明,TiO2的数量和分布对最终集水效率有重要影响。这种廉价且易于制造的织物能够模仿沙漠甲虫的背部和蜘蛛丝,它们能够在不增加能源消耗的情况下进行雾气捕集。

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