润湿
马朗戈尼效应
渗吸
材料科学
毛细管作用
接触角
毛细管冷凝
润湿转变
冷凝
复合材料
纳米技术
非平衡态热力学
蒸发
机械
多孔介质
微流控
水蒸气
热管
化学物理
作者
Ze Xu,Raphael Saiseau,Olinka Ramírez-Soto,Stefan Karpitschka
标识
DOI:10.1073/pnas.2519761122
摘要
Wetting of micropatterned surfaces is ubiquitous in nature and key to many technological applications like spray cooling, inkjet printing, and semiconductor processing. Overcoming the intrinsic, chemistry- and topography-governed wetting behaviors often requires specific materials which limits applicability. Here, we demonstrate that droplet spreading and wicking on hydrophilic patterns can be controlled by the vapor of a lower-surface-tension liquid. Condensation of the vapor induces Marangoni forces that delay capillary wicking and contract liquid into a droplet on top of the imbibed film. Thereby, macroscopic droplets can be maintained in an apparent partial wetting state, effectively cloaking the pattern. We quantify how pattern characteristics and vapor condensation compete, balancing in different wetting states from pinning to complete imbibition. Since this balance is the result of nonequilibrium processes rather than static wetting phenomena, it can be reversibly tuned by modifying the vapor concentration. This way, we guide droplets across patterns and even extract previously imbibed liquids, devising strategies for coating, cleaning, and drying functional surfaces.
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