Yu Cunlong, Zhang Longhao, Ru Yunfei, Li Ning, Li Chuxin, Gao Can, Dong Zhichao, Jiang Lei
Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry, Beijing Advanced Innovation Center for Biomedical Engineering , Beihang University , Beijing 100191 , P. R. China.
CAS Key Laboratory of Bio-Inspired Materials and Interfacial Sciences, Technical Institute of Physics and Chemistry , Chinese Academy of Sciences , Beijing 100190 , P. R. China.
ACS Nano. 2018 Nov 27;12(11):11307-11315. doi: 10.1021/acsnano.8b06023. Epub 2018 Oct 18.
To promote drop mobility, lubricating the gap between liquid drop and solid surface is a facile method which has been widely exploited by nature. Examples include lotus and rice leaves using entrapped air to "lubricate" water and Nepenthes pitcher plant using a slippery water layer to trap insects. Inspired by these, here, we report a strategy for transporting drop cargoes via the unidirectional spreading of immiscible lubricants on the peristome-mimetic surface. Oleophilic/hydrophobic peristome-mimetic surfaces were fabricated through replicating three-dimensional printed samples. The peristome-mimetic surface, via unidirectional immiscible hexadecane spreading, can transport a wide diversity of drop cargoes over a long distance with no loss with controllable drop volumes and velocities, hence mixing multiphase liquids and even reacting liquids. We anticipate this unidirectional drop cargo transport technique will find use in microfluidics, microreactors, water harvesting systems, etc.
为了促进液滴移动性,润滑液滴与固体表面之间的间隙是一种简便的方法,自然界已广泛采用。例子包括荷叶和稻叶利用截留的空气来“润滑”水,以及猪笼草利用光滑的水层来捕获昆虫。受这些启发,在此我们报告一种通过在仿口缘表面上不混溶润滑剂的单向铺展来运输液滴货物的策略。通过复制三维打印样品制备了亲油/疏水仿口缘表面。仿口缘表面通过单向不混溶的十六烷铺展,可以在长距离内运输各种各样的液滴货物而无损失,且液滴体积和速度可控,从而实现多相液体甚至反应液体的混合。我们预计这种单向液滴货物运输技术将在微流体、微反应器、集水系统等中得到应用。