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Laser Direct Writing of Tree-Shaped Hierarchical Cones on a Superhydrophobic Film for High-Efficiency Water Collection.

Meng WangQian LiuHaoran ZhangChuang WangLei WangBingxi XiangYongtao FanChuan Fei GuoShuangchen Ruan
Published in: ACS applied materials & interfaces (2017)
Directional water collection has stimulated a great deal of interest because of its potential applications in the field of microfluidics, liquid transportation, fog harvesting, and so forth. There have been some bio or bioinspired structures for directional water collection, from one-dimensional spider silk to two-dimensional star-like patterns to three-dimensional Nepenthes alata. Here we present a simple way for the accurate design and highly controllable driving of tiny droplets: by laser direct writing of hierarchical patterns with modified wettability and desired geometry on a superhydrophobic film, the patterned film can precisely and directionally drive tiny water droplets and dramatically improve the efficiency of water collection with a factor of ∼36 compared with the original superhydrophobic film. Such a patterned film might be an ideal platform for water collection from humid air and for planar microfluidics without tunnels.
Keyphrases
  • room temperature
  • reduced graphene oxide
  • high efficiency
  • high resolution
  • high throughput
  • mass spectrometry
  • ionic liquid
  • high speed
  • quantum dots
  • energy transfer