材料科学
纳米技术
磁场
航程(航空)
磁铁
计算机科学
物理
机械工程
复合材料
工程类
量子力学
作者
Jeong Hun Kim,Seong Min Kang,Byung Jun Lee,Hangil Ko,Won‐Gyu Bae,Kahp Y. Suh,Moon Kyu Kwak,Hoon Eui Jeong
摘要
The manipulation of droplets is used in a wide range of applications, from lab-on-a-chip devices to bioinspired functional surfaces. Although a variety of droplet manipulation techniques have been proposed, active, fast and reversible manipulation of pure discrete droplets remains elusive due to the technical limitations of previous techniques. Here, we describe a novel technique that enables active, fast, precise and reversible control over the position and motion of a pure discrete droplet with only a permanent magnet by utilizing a magnetically responsive flexible film possessing actuating hierarchical pillars on the surface. This magnetically responsive surface shows reliable actuating capabilities with immediate field responses and maximum tilting angles of ~90°. Furthermore, the magnetic responsive film exhibits superhydrophobicity regardless of tilting angles of the actuating pillars. Using this magnetically responsive film, we demonstrate active and reversible manipulation of droplets with a remote magnetic force.
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