4.8 Article

Electric Field and Gradient Microstructure for Cooperative Driving of Directional Motion of Underwater Oil Droplets

Journal

ADVANCED FUNCTIONAL MATERIALS
Volume 26, Issue 44, Pages 7986-7992

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adfm.201601843

Keywords

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Funding

  1. 973 Program [2013CB933004]
  2. Chinese National Natural Science Foundation [21373001, 21421061]
  3. Youth Talent Plan of Beijing City [29201492]
  4. China Scholarship Council [201306025005]
  5. Fundamental Research Funds for the Central Universities [YWF-15-HHXY-012, FRF-BR-15-023A]
  6. Chinese Academy of Sciences [KJZD-EW-M03]
  7. 111 project [B14009]

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Driving a liquid droplet with control of directional motion on a solid surface, by introducing a surface wettability gradient or external stimuli, has attracted considerable research attention. There still remain challenges, however, due to the slow response rate and slow speed of continuous liquid droplet motion on the structured surface. Here, an approach to continuously drive the underwater oil droplet with control of directional motion by the cooperative effects of an electric field and the gradient of a porous polystyrene microstructure is demonstrated. The gradient microstructure induces the liquid droplet to take on an asymmetrical shape, causing unbalanced pressure on both ends to orient the droplet for motion in a particular direction. Meanwhile, the electric field decreases the contact area and the corresponding viscous drag between the droplet and the gradient-structured surface. Then, the unbalanced pressure pushes the underwater oil droplet to move directionally and continuously at a certain voltage. This work provides a new strategy to control underwater oil droplets and realize unidirectional motion. It is also promising for the design of new smart interface materials for applications such as electrofluidic displays, biological cell and particle manipulation, and other types of microfluidic devices.

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