Chemical Society reviews, ISSN 0306-0012, 04/2014, Volume 43, Issue 8, pp. 2784 - 2798
Superamphiphobicity is an effect where surface roughness and surface chemistry combine to generate surfaces which are both superhydrophobic and...
Journal Article
Chemical Society Reviews, ISSN 0306-0012, 3/2014, Volume 43, Issue 8, pp. 2784 - 2798
Superamphiphobicity is an effect where surface roughness and surface chemistry combine to generate surfaces which are both superhydrophobic and...
FLUORINATED ALKYL SILANE | LONG-TERM | SUPERHYDROPHOBIC SURFACES | ROBUST | WATER-REPELLENT | SUPEROLEOPHOBIC SURFACES | COATINGS | CONDUCTIVE POLYMERS | POLYHEDRAL OLIGOMERIC SILSESQUIOXANE | CHEMISTRY, MULTIDISCIPLINARY | SILICONE NANOFILAMENTS | Surface roughness | Contact angle | Hysteresis | Surface chemistry | Contact
FLUORINATED ALKYL SILANE | LONG-TERM | SUPERHYDROPHOBIC SURFACES | ROBUST | WATER-REPELLENT | SUPEROLEOPHOBIC SURFACES | COATINGS | CONDUCTIVE POLYMERS | POLYHEDRAL OLIGOMERIC SILSESQUIOXANE | CHEMISTRY, MULTIDISCIPLINARY | SILICONE NANOFILAMENTS | Surface roughness | Contact angle | Hysteresis | Surface chemistry | Contact
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 11/2008, Volume 105, Issue 47, pp. 18200 - 18205
Superhydrophobic surfaces display water contact angles greater than 150° in conjunction with low contact angle hysteresis. Microscopic pockets of air trapped...
Liquids | Interfacial tension | Octanes | Lead | Geometric angles | Surface texture | Liquid vapor interfaces | Hysteresis | Voodoo | Surface energy | Liquid-repellency | Superoleophobic | Superhydrophobic | Cassie state | Composite interface | DROPS | DESIGN | MULTIDISCIPLINARY SCIENCES | composite interface | MODEL | ULTRALYOPHOBIC SURFACES | FIBERS EXHIBITING SUPERHYDROPHOBICITY | OIL-REPELLENT SURFACES | CONTACT ANGLES | superoleophobic | LOTUS | liquid-repellency | superhydrophobic | ROUGH SURFACES | WATER | Hydrophobic effect | Thermodynamics | Composite materials | Solid-liquid equilibrium | Research | Properties | Physical Sciences
Liquids | Interfacial tension | Octanes | Lead | Geometric angles | Surface texture | Liquid vapor interfaces | Hysteresis | Voodoo | Surface energy | Liquid-repellency | Superoleophobic | Superhydrophobic | Cassie state | Composite interface | DROPS | DESIGN | MULTIDISCIPLINARY SCIENCES | composite interface | MODEL | ULTRALYOPHOBIC SURFACES | FIBERS EXHIBITING SUPERHYDROPHOBICITY | OIL-REPELLENT SURFACES | CONTACT ANGLES | superoleophobic | LOTUS | liquid-repellency | superhydrophobic | ROUGH SURFACES | WATER | Hydrophobic effect | Thermodynamics | Composite materials | Solid-liquid equilibrium | Research | Properties | Physical Sciences
Journal Article
Advanced Materials, ISSN 0935-9648, 07/2017, Volume 29, Issue 27, pp. 1700295 - n/a
Superomniphobic surfaces are extremely repellent to virtually all liquids. By combining superomniphobicity and shape memory effect, metamorphic superomniphobic...
wetting transition | superomniphobic surfaces | shape memory polymers | PHYSICS, CONDENSED MATTER | DESIGN | PHYSICS, APPLIED | CONTACT-ANGLE HYSTERESIS | SOLID-SURFACES | MATERIALS SCIENCE, MULTIDISCIPLINARY | SHAPE-MEMORY POLYMERS | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | SUPERHYDROPHOBIC SURFACE | MICROPILLAR ARRAYS | CHEMISTRY, MULTIDISCIPLINARY | SUPEROLEOPHOBIC SURFACES | FABRICATION | SUPERAMPHIPHOBIC SURFACES | WATER | Drug delivery systems | Liquids | Wetting | Morphology | Shape memory | Martensitic transformations | Biosensors
wetting transition | superomniphobic surfaces | shape memory polymers | PHYSICS, CONDENSED MATTER | DESIGN | PHYSICS, APPLIED | CONTACT-ANGLE HYSTERESIS | SOLID-SURFACES | MATERIALS SCIENCE, MULTIDISCIPLINARY | SHAPE-MEMORY POLYMERS | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | SUPERHYDROPHOBIC SURFACE | MICROPILLAR ARRAYS | CHEMISTRY, MULTIDISCIPLINARY | SUPEROLEOPHOBIC SURFACES | FABRICATION | SUPERAMPHIPHOBIC SURFACES | WATER | Drug delivery systems | Liquids | Wetting | Morphology | Shape memory | Martensitic transformations | Biosensors
Journal Article
Advanced Materials, ISSN 0935-9648, 04/2015, Volume 27, Issue 13, pp. 2231 - 2235
Superamphiphobic, (quasi‐)ordered plasma‐textured surfaces, coated with a perfluorinated monolayer, exhibit extreme resistance against drop‐pinning for both...
laser‐induced forward transfer | plasma nanotexturing | colloidal lithography | pressure‐stable superamphiphobic materials | pinning pressure | pressure-stable superamphiphobic materials | laser-induced forward transfer | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | CONTACT-ANGLE HYSTERESIS | SUPERHYDROPHOBIC SURFACES | SUPEROMNIPHOBIC SURFACES | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | SPECIAL WETTABILITY | CHEMISTRY, MULTIDISCIPLINARY | DURABILITY | FILMS | SUPEROLEOPHOBIC SURFACES | COATINGS | MICRO | MICROFLUIDICS | Surface Tension | Plasma Gases - chemistry | Lasers | Nanotechnology - methods | Water - chemistry | Hydrophobic and Hydrophilic Interactions | Polymers - chemistry | Microtechnology - methods | Coating | Impact tests | Sustaining | Monolayers
laser‐induced forward transfer | plasma nanotexturing | colloidal lithography | pressure‐stable superamphiphobic materials | pinning pressure | pressure-stable superamphiphobic materials | laser-induced forward transfer | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | CONTACT-ANGLE HYSTERESIS | SUPERHYDROPHOBIC SURFACES | SUPEROMNIPHOBIC SURFACES | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | SPECIAL WETTABILITY | CHEMISTRY, MULTIDISCIPLINARY | DURABILITY | FILMS | SUPEROLEOPHOBIC SURFACES | COATINGS | MICRO | MICROFLUIDICS | Surface Tension | Plasma Gases - chemistry | Lasers | Nanotechnology - methods | Water - chemistry | Hydrophobic and Hydrophilic Interactions | Polymers - chemistry | Microtechnology - methods | Coating | Impact tests | Sustaining | Monolayers
Journal Article
Scientific Reports, ISSN 2045-2322, 03/2014, Volume 4, Issue 1, p. 4158
Compared to the significant body of work devoted to surface engineering for promoting dropwise condensation heat transfer of steam, much less attention has...
SUPERHYDROPHOBIC NANOSTRUCTURED SURFACES | WATER CONDENSATION | HEAT-TRANSFER | COALESCENCE | MULTIDISCIPLINARY SCIENCES | SUPEROLEOPHOBIC SURFACES | GROWTH | TRANSITIONS | ULTRAHYDROPHOBIC SURFACES | DROPLET MOBILITY | NATURAL-GAS | Industrial applications | Condensation | Heat transfer | Refrigerants | Steam | Manganese
SUPERHYDROPHOBIC NANOSTRUCTURED SURFACES | WATER CONDENSATION | HEAT-TRANSFER | COALESCENCE | MULTIDISCIPLINARY SCIENCES | SUPEROLEOPHOBIC SURFACES | GROWTH | TRANSITIONS | ULTRAHYDROPHOBIC SURFACES | DROPLET MOBILITY | NATURAL-GAS | Industrial applications | Condensation | Heat transfer | Refrigerants | Steam | Manganese
Journal Article
Advances in Colloid and Interface Science, ISSN 0001-8686, 08/2015, Volume 222, pp. 92 - 103
The abrupt change in the apparent contact angle occurring on a rough surface is called wetting transition. This change may be spontaneous or promoted by...
Wetting transitions | Wetting states | Cassie wetting | Rough surfaces | Wenzel wetting | Superhydrophobicity | Apparent contact angle | CHEMICALLY HETEROGENEOUS SURFACES | CONTACT-ANGLE HYSTERESIS | SUPERHYDROPHOBIC SURFACES | SOLID-SURFACES | Superhydrophobidty | CHEMISTRY, PHYSICAL | TEXTURED SURFACES | SELF-CLEANING SURFACES | PATTERNED SURFACES | SUPEROLEOPHOBIC SURFACES | CASSIE-BAXTER | WATER DROPLETS
Wetting transitions | Wetting states | Cassie wetting | Rough surfaces | Wenzel wetting | Superhydrophobicity | Apparent contact angle | CHEMICALLY HETEROGENEOUS SURFACES | CONTACT-ANGLE HYSTERESIS | SUPERHYDROPHOBIC SURFACES | SOLID-SURFACES | Superhydrophobidty | CHEMISTRY, PHYSICAL | TEXTURED SURFACES | SELF-CLEANING SURFACES | PATTERNED SURFACES | SUPEROLEOPHOBIC SURFACES | CASSIE-BAXTER | WATER DROPLETS
Journal Article
MRS Bulletin, ISSN 0883-7694, 05/2013, Volume 38, Issue 5, pp. 383 - 390
Surfaces that display liquid contact angles greater than 150 degrees along with low contact angle hysteresis for liquids with both high and low surface tension...
nanostructure | coating | microstructure | texture | Surface chemistry | ADHESION | ENERGY | PHYSICS, APPLIED | REPELLENT | CONTACT-ANGLE HYSTERESIS | SUPERHYDROPHOBIC SURFACES | MULTISCALE ROUGHNESS | MATERIALS SCIENCE, MULTIDISCIPLINARY | SUPEROLEOPHOBIC SURFACES | FABRICATION | TRANSPARENT | Liquids | Surface layer | Durability | Contact angle | Arrays | Texture | Hysteresis | Contact
nanostructure | coating | microstructure | texture | Surface chemistry | ADHESION | ENERGY | PHYSICS, APPLIED | REPELLENT | CONTACT-ANGLE HYSTERESIS | SUPERHYDROPHOBIC SURFACES | MULTISCALE ROUGHNESS | MATERIALS SCIENCE, MULTIDISCIPLINARY | SUPEROLEOPHOBIC SURFACES | FABRICATION | TRANSPARENT | Liquids | Surface layer | Durability | Contact angle | Arrays | Texture | Hysteresis | Contact
Journal Article
NPG Asia Materials, ISSN 1884-4049, 2014, Volume 6, Issue 6, pp. e109 - e109
Surfaces that display contact angles >150 degrees along with low contact angle hysteresis with essentially all high and low surface tension liquids, including...
Oil-repellent | Superomniphobic | Superoleophobic | Superhydrophobic | Water-repellent | Omniphobic | ENERGY | CONTACT-ANGLE HYSTERESIS | SUPERHYDROPHOBIC SURFACES | MULTISCALE ROUGHNESS | MATERIALS SCIENCE, MULTIDISCIPLINARY | ADHESIVE FORCE | LUBRICANT-IMPREGNATED SURFACES | OIL-REPELLENT SURFACES | FILMS | SUPEROLEOPHOBIC SURFACES
Oil-repellent | Superomniphobic | Superoleophobic | Superhydrophobic | Water-repellent | Omniphobic | ENERGY | CONTACT-ANGLE HYSTERESIS | SUPERHYDROPHOBIC SURFACES | MULTISCALE ROUGHNESS | MATERIALS SCIENCE, MULTIDISCIPLINARY | ADHESIVE FORCE | LUBRICANT-IMPREGNATED SURFACES | OIL-REPELLENT SURFACES | FILMS | SUPEROLEOPHOBIC SURFACES
Journal Article
ACS Nano, ISSN 1936-0851, 01/2017, Volume 11, Issue 1, pp. 1113 - 1119
Superwetting surfaces require micro-/nanohierarchical structures but are mechanically weak. Moreover, such surfaces are easily polluted by amphiphiles. In this...
robust surfaces | self-cleaning | oil/water separation | underwater superoleophobic | inorganic adhesives | DESIGN | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | CONTAMINATION | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | SELF-CLEANING SURFACES | OIL | FILMS | COATINGS | SEPARATION | IN-WATER EMULSIONS | SUPEROLEOPHOBICITY
robust surfaces | self-cleaning | oil/water separation | underwater superoleophobic | inorganic adhesives | DESIGN | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | CONTAMINATION | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | SELF-CLEANING SURFACES | OIL | FILMS | COATINGS | SEPARATION | IN-WATER EMULSIONS | SUPEROLEOPHOBICITY
Journal Article
Journal of Microelectromechanical Systems, ISSN 1057-7157, 11/2019, pp. 1 - 8
Superomniphobic surfaces that repel liquids of extremely low surface tension rely on carefully fabricated doubly re-entrant topographies, typically made by...
silicon | Cassie Wenzel transition | self-cleaning | superoleophobic | microfluidics | superhydrophobic | plasma etching
silicon | Cassie Wenzel transition | self-cleaning | superoleophobic | microfluidics | superhydrophobic | plasma etching
Journal Article
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, ISSN 1364-503X, 08/2016, Volume 374, Issue 2073, p. 20160193
Polypropylene (PP) is a popular plastic material used in consumer packaging. It would be desirable if such plastic containers were liquid repellent and not so...
Nanoparticles | Bioinspired | Superomniphobic | Superoleophobic | Superhydrophobic | Wear-resistant | TRANSFORMATION | wear-resistant | MULTIDISCIPLINARY SCIENCES | ANTI-SMUDGE | bioinspired | ROUGHNESS | nanoparticles | COATINGS | BY-LAYER TECHNIQUE | superoleophobic | MICRO | superomniphobic | superhydrophobic | WATER | Biomimetic Materials - chemical synthesis | Nanoparticles - chemistry | Surface Properties | Nanoparticles - ultrastructure | Hydrophobic and Hydrophilic Interactions | Materials Testing | Polypropylenes - chemistry | Oils - chemistry
Nanoparticles | Bioinspired | Superomniphobic | Superoleophobic | Superhydrophobic | Wear-resistant | TRANSFORMATION | wear-resistant | MULTIDISCIPLINARY SCIENCES | ANTI-SMUDGE | bioinspired | ROUGHNESS | nanoparticles | COATINGS | BY-LAYER TECHNIQUE | superoleophobic | MICRO | superomniphobic | superhydrophobic | WATER | Biomimetic Materials - chemical synthesis | Nanoparticles - chemistry | Surface Properties | Nanoparticles - ultrastructure | Hydrophobic and Hydrophilic Interactions | Materials Testing | Polypropylenes - chemistry | Oils - chemistry
Journal Article
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Full Text
A Waterborne Coating System for Preparing Robust, Self‐healing, Superamphiphobic Surfaces
Advanced Functional Materials, ISSN 1616-301X, 04/2017, Volume 27, Issue 14, pp. 1604261 - n/a
Existing coating systems for preparing superamphiphobic surfaces are predominantly confined to small‐scale uses due to the heavy use of organic solvents....
durable | washing | superamphiphobic | abrasion | waterborne coating | self‐healing | self-healing | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | SUPERHYDROPHOBIC SURFACES | FLUOROALKYL SILANE | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | NANOPARTICLES | OIL-REPELLENT SURFACES | SUPEROLEOPHOBIC SURFACES | FABRICATION | TRANSPARENT | Surface active agents | Coatings | Silane | Solvents | Abrasion | Small scale | Ingredients | Self healing materials | Washing | Contact angle | Dispersion | Substrates | Chemical damage | Chemical attack | Low cost | Healing | Fabrics | Abrasives | Fluorination | Protective coatings | Hysteresis | Durability | Coating | Fluorocarbons | Boiling
durable | washing | superamphiphobic | abrasion | waterborne coating | self‐healing | self-healing | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | SUPERHYDROPHOBIC SURFACES | FLUOROALKYL SILANE | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | NANOPARTICLES | OIL-REPELLENT SURFACES | SUPEROLEOPHOBIC SURFACES | FABRICATION | TRANSPARENT | Surface active agents | Coatings | Silane | Solvents | Abrasion | Small scale | Ingredients | Self healing materials | Washing | Contact angle | Dispersion | Substrates | Chemical damage | Chemical attack | Low cost | Healing | Fabrics | Abrasives | Fluorination | Protective coatings | Hysteresis | Durability | Coating | Fluorocarbons | Boiling
Journal Article
Advanced Functional Materials, ISSN 1616-301X, 06/2016, Volume 26, Issue 21, pp. 3599 - 3611
Many types of slippery liquid‐infused porous surfaces (‘SLIPS’) can resist adhesion and colonization by microorganisms. These ‘slippery’ materials thus offer...
antifungal | controlled release | antibacterial | multilayers | slippery surfaces | THIN-FILMS | TRICLOSAN | PHYSICS, CONDENSED MATTER | INFECTIONS | PHYSICS, APPLIED | POLYMER MULTILAYERS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | OMNIPHOBICITY | SUPEROLEOPHOBIC SURFACES | INTERFACES | FABRICATION | PSEUDOMONAS-AERUGINOSA BIOFILMS | BEHAVIORS | Polymers | Analysis | Pathogenic microorganisms | Pathogens | Microorganisms | Fouling | Slip | Media | Bacteria | Organisms | Antiinfectives and antibacterials | Multilayers | Controlled Release | Antifungal | Antibacterial | Slippery Surfaces
antifungal | controlled release | antibacterial | multilayers | slippery surfaces | THIN-FILMS | TRICLOSAN | PHYSICS, CONDENSED MATTER | INFECTIONS | PHYSICS, APPLIED | POLYMER MULTILAYERS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | OMNIPHOBICITY | SUPEROLEOPHOBIC SURFACES | INTERFACES | FABRICATION | PSEUDOMONAS-AERUGINOSA BIOFILMS | BEHAVIORS | Polymers | Analysis | Pathogenic microorganisms | Pathogens | Microorganisms | Fouling | Slip | Media | Bacteria | Organisms | Antiinfectives and antibacterials | Multilayers | Controlled Release | Antifungal | Antibacterial | Slippery Surfaces
Journal Article