Ni Erli, Li Tao, Ruan Ying, Ma Yingjie, Wang Yifei, Jiang Yanyan, Li Hui
Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials, Ministry of Education, Shandong University, Jinan 250061, China.
Department of General Surgery, First Affiliated Hospital of Shandong First Medical University, Jinan 250014, China.
Langmuir. 2021 Aug 10;37(31):9429-9438. doi: 10.1021/acs.langmuir.1c01092. Epub 2021 Jul 28.
Wettability of liquid metal gallium is of vital significance in the field of modern industries, such as direct writing printing and microfluidics. A liquid interface is a recently developed and promising approach to regulate wettability but has not been well applied in liquid metals yet. This study focuses on the wetting performance of gallium droplets on organic liquid films. The results show that the organic liquid film could change the wetting state of the gallium droplet. Based on the solid substrate roughness and surface tension of the organic liquid, we could estimate whether the gallium droplet is in a slippery Wenzel or a Cassie state. Subsequently, we apply the thermodynamic stable model on different organic liquid films by spreading parameters to predict a priori whether an arbitrary combination of solid roughness and organic liquid is suitable for designing lubricant-infused surfaces (LIS) used in gallium droplets. More interestingly, we found that the "cloaking" could delay surface oxide formation, which will benefit the manipulation of liquid metal droplets. This paper would provide a better understanding of wettability of liquid metal on an organic liquid surface.
液态金属镓的润湿性在现代工业领域,如直写印刷和微流体中具有至关重要的意义。液体界面是一种最近开发且很有前景的调节润湿性的方法,但尚未在液态金属中得到很好的应用。本研究聚焦于镓液滴在有机液体薄膜上的润湿性能。结果表明,有机液体薄膜可以改变镓液滴的润湿状态。基于固体基底粗糙度和有机液体的表面张力,我们可以估计镓液滴是处于滑溜的文泽尔状态还是卡西状态。随后,我们通过铺展参数将热力学稳定模型应用于不同的有机液体薄膜,以预先预测固体粗糙度和有机液体的任意组合是否适合设计用于镓液滴的注入润滑剂表面(LIS)。更有趣的是,我们发现“隐形”可以延迟表面氧化物的形成,这将有利于液态金属液滴的操控。本文将有助于更好地理解液态金属在有机液体表面的润湿性。