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Assessing durability of superhydrophobic surfaces
Ileana Malavasi
, I. Bernagozzi
, Carlo Antonini
, Marco Marengo
University of Brighton
Centre for Regenerative Medicine and Devices
Advanced Engineering Centre
Research output
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Contribution to journal
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Article
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peer-review
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Engineering
Illustrates
100%
Industrial Applications
100%
Figure of Merit
100%
Repellency
100%
Aluminum Substrate
100%
Operational Condition
100%
Alkaline Environment
100%
Keyphrases
Superhydrophobic Surface
100%
Surface Durability
33%
Alcohol
16%
Technology Transfer
16%
Operating Conditions
16%
Industrial Application
16%
Specific Applications
16%
Water Repellency
16%
Plethora
16%
Hydrocarbons
16%
Mechanical Erosion
16%
Acidic Environment
16%
Aluminum Substrate
16%
Alkaline Environment
16%
Ionic Solution
16%
Ultraviolet Exposure
16%
Lauric Acid
16%
Water Immersion
16%
Liquid Accumulation
16%
Material Science
Superhydrophobic
100%
Surface (Surface Science)
100%
Aluminum
16%
Liquid Water
16%
Surface Testing
16%