CAS Key Laboratory of Bio-inspired Materials and Interface Sciences, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Zhongguancun East Road, 29, 100190, Beijing, PR China.
School of Future Technology, University of Chinese Academy of Sciences, Yuquan Road, No.19(A), 100049, Beijing, PR China.
Angew Chem Int Ed Engl. 2017 Oct 23;56(44):13623-13628. doi: 10.1002/anie.201706665. Epub 2017 Sep 22.
Separation of micro-scaled water-in-oil droplets is important in environmental protection, bioassays, and saving functional inks. So far, bulk oil-water separation has been achieved by membrane separation and sponge absorption, but micro-drop separation still remains a challenge. Herein we report that instead of the "plug-and-go" separation model, tiny water-in-oil droplets can be separated into pure water and oil droplets through "go-in-opposite ways" on curved peristome-mimetic surfaces, in milliseconds, without energy input. More importantly, this overflow controlled method can be applied to handle oil-in-oil droplets with surface tension differences as low as 14.7 mN m and viscous liquids with viscosities as high as hundreds centipoises, which markedly increases the range of applicable liquids for micro-scaled separation. Furthermore, the curved peristome-mimetic surface guides the separated drops in different directions with high efficiency.
微尺度油包水乳滴的分离在环境保护、生物测定和保存功能油墨方面都很重要。到目前为止,通过膜分离和海绵吸收已经实现了大规模的油水分离,但微滴分离仍然是一个挑战。在此,我们报告称,微小的油包水乳滴可以通过在类口器仿生曲面的相反方向上进入,而不是采用“即插即用”的分离模式,在毫秒内实现分离为纯水和油滴,而无需能量输入。更重要的是,这种溢流控制方法可以应用于处理表面张力差低至 14.7 mN/m 和粘度高达数百厘泊的油包水乳滴,显著增加了微尺度分离适用液体的范围。此外,类口器仿生曲面以高效率引导分离的液滴向不同方向流动。