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superhydrophobicity
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superhydrophobicity

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Also known as ultrahydrophobicity

thumb|A drop on a lotus surface, with a contact angle of greater than 146°. thumb|thumbtime=0.2|A water droplet falling onto a superhydrophobic, elastic surface.

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Encyclopedic overview

8 sections
Contents
  • Theory
  • Unitary versus hierarchical roughness structures
  • Examples in nature
  • Recent research
  • Potential applications
  • See also
  • References
  • External links

thumb|A drop on a lotus surface, with a contact angle of greater than 146°. thumb|thumbtime=0.2|A water droplet falling onto a superhydrophobic, elastic surface.

In chemistry and materials science, ultrahydrophobic (or superhydrophobic) surfaces are highly hydrophobic, i.e., extremely difficult to wet. The contact angles of a water droplet on an ultrahydrophobic material exceed 150°. This is also referred to as the lotus effect, after the superhydrophobic leaves of the lotus plant. A droplet striking these kinds of surfaces can fully rebound like an elastic ball. Interactions of bouncing drops can be further reduced using special superhydrophobic surfaces that promote symmetry breaking, pancake bouncing or waterbowl bouncing.

Excerpted from Wikipedia’s “superhydrophobicity” article, available under the CC BY-SA 4.0 licence.

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