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Creating superhydrophobic surface structures via the rose petal effect on stainless steel with a picosecond laser
J. Lawrence, D.G. Waugh
Research output
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Contribution to journal
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Article
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peer-review
7
Citations (Scopus)
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Dive into the research topics of 'Creating superhydrophobic surface structures via the rose petal effect on stainless steel with a picosecond laser'. Together they form a unique fingerprint.
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Keyphrases
Stainless Steel
100%
Surface Structure
100%
Picosecond Laser
100%
Superhydrophobic Surface
100%
Rose Petal Effect
100%
Contact Angle
66%
Laser-induced Periodic Surface Structures (LIPSS)
66%
Surface Roughness
33%
Wettability
33%
Laser Processing
33%
Stainless Steel Surface
33%
Femtosecond Laser
33%
Double Structure
33%
Hydrophilic Surface
33%
Hierarchical Surface
33%
Contact Angle Hysteresis
33%
Superhydrophobic
33%
Low-cost Alternative
33%
Engineering
Stainless Steel
100%
Picosecond Laser
100%
Structure Surface
100%
Induced Periodic Surface Structure
50%
Laser Processing
25%
Steel Surface
25%
Hydrophilic Surface
25%
Contact Angle Hysteresis
25%
Femtosecond Laser
25%