4.8 Article

Surface charge printing for programmed droplet transport

Journal

NATURE MATERIALS
Volume 18, Issue 9, Pages 936-+

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41563-019-0440-2

Keywords

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Funding

  1. National Natural Science Foundation of China [21603026]
  2. Research Grants Council of Hong Kong [C1018-17G]
  3. Max-Planck-Gesellschaft (Max Planck Partner Group UESTC-MPIP)
  4. ERC [340391-SUPRO]

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The directed, long-range and self-propelled transport of droplets on solid surfaces is crucial for many applications from water harvesting to bio-analysis(1-9). Typically, preferential transport is achieved by topographic or chemical modulation of surface wetting gradients that break the asymmetric contact line and overcome the resistance force to move droplets along a particular direction(10-16). Nonetheless, despite extensive progress, directional droplet transport is limited to low transport velocity or short transport distance. Here we report the high-velocity and ultralong transport of droplets elicited by surface charge density gradients printed on diverse substrates. We leverage the facile water droplet printing on superamphiphobic surfaces to create rewritable surface charge density gradients that stimulate droplet propulsion under ambient conditions(17) and without the need for additional energy input. Our strategy provides a platform for programming the transport of droplets on flat, flexible and vertical surfaces that may be valuable for applications requiring a controlled movement of droplets(17-19).

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