Liu Xiaoyi, Trosseille Joachim, Mongruel Anne, Marty Frédéric, Basset Philippe, Laurent Justine, Royon Laurent, Cui Tianhong, Beysens Daniel, Bourouina Tarik
ESYCOM Lab, UMR 9007 CNRS, Univ Gustave Eiffel, 77454 Marne-la-Vallée, France.
Fondation de l'Ecole Normale Supérieure, Paris, 75005, France.
iScience. 2021 Jul 1;24(7):102814. doi: 10.1016/j.isci.2021.102814. eCollection 2021 Jul 23.
Dew water, mostly ignored until now, can provide clean freshwater resources, just by extracting the atmospheric vapor available in surrounding air. Inspired by silicon-based solar panels, the vapor can be harvested by a concept of water condensing panels. Efficient water harvesting requires not only a considerable yield but also a timely water removal from the surface since the very beginning of condensation to avoid the huge evaporation losses. This translates into strict surface properties, which are difficult to simultaneously realize. Herein, we study various functionalized silicon surfaces, including the so-called Black Silicon, which supports two droplet motion modes-out-of-plane jumping and in-plane sweeping, due to its unique surface morphology, synergistically leading to a pioneering combination of above two required characteristics. According to silicon material's scalability, the proposed silicon-based water panels would benefit from existing infrastructures toward dual functions of energy harvesting in daytime and water harvesting in nighttime.
露水,直到现在大多被忽视,它可以通过提取周围空气中的大气蒸汽来提供清洁的淡水资源。受硅基太阳能电池板的启发,可以通过水冷凝板的概念来收集蒸汽。高效的水收集不仅需要相当大的产量,而且从冷凝开始就需要及时从表面去除水分,以避免巨大的蒸发损失。这就转化为严格的表面特性,而这些特性很难同时实现。在此,我们研究了各种功能化硅表面,包括所谓的黑硅,由于其独特的表面形态,它支持两种液滴运动模式——平面外跳跃和平面内扫掠,协同导致了上述两种所需特性的开创性组合。根据硅材料的可扩展性,所提出的硅基水板将受益于现有的基础设施,实现白天能量收集和夜间水收集的双重功能。