Surface chemistry controlled superhydrophobic stability of W18O49 nanowire arrays submerged underwater
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- Type
- article
- Published
- 2012-09-11
- Cited by
- 43
- References
- 42
- Access
- Open access
- OpenAlex
- https://openalex.org/W1973987722
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:137316155
Keywords
Underwater, Materials science, Hydrostatic pressure, Surface energy, Fabrication
References
- Bioinspired superhydrophobic coatings of carbon nanotubes and linear pi systems based on the "bottom-up" self-assembly approach.
- On the stability of gas bubbles in liquid-gas solutions
- Metastable underwater superhydrophobicity.
- Designing for optimum liquid repellency.
- Superhydrophobic surfaces: From the lotus leaf to the submarine
- Self-cleaning coatings
- Microscale and nanoscale hierarchical structured mesh films with superhydrophobic and superoleophilic properties induced by long-chain fatty acids
- Wetting and anti-wetting on aligned carbon nanotube films.
- Surface Free Energy of Alloy Nitride Coatings Deposited Using Closed Field Unbalanced Magnetron Sputter Ion Plating
- Air bubble bursting effect of lotus leaf.
- Chemically modified superhydrophobic WO(x) nanowire arrays and UV photopatterning.
- Growth and characterization of stoichiometric tungsten oxide nanorods by thermal evaporation and subsequent annealing
- Design and Creation of Superwetting/Antiwetting Surfaces
- Dynamic effects of bouncing water droplets on superhydrophobic surfaces.
- Superhydrophobic Coatings on Curved Surfaces Featuring Remarkable Supporting Force
- Slippy and sticky microtextured solids
- Adhesion and components of solid surface energies
- Biomimetic hierarchical ZnO structure with superhydrophobic and antireflective properties.
- Pressure induced transition between superhydrophobic states: configuration diagrams and effect of surface feature size.
- Application of superhydrophobic surface with high adhesive force in no lost transport of superparamagnetic microdroplet.
Cited by
- Surface wetting of superhydrophobic aluminum oxide nanostructures investigated using the fiber-optic spectrometer and quartz crystal microbalance
- Combining the lotus leaf effect with artificial photosynthesis: regeneration of underwater superhydrophobicity of hierarchical ZnO/Si surfaces by solar water splitting
- Bioinspired superhydrophobic surfaces, fabricated through simple and scalable roll-to-roll processing
- Fabrication of slippery liquid-infused porous surface based on carbon fiber with enhanced corrosion inhibition property
- Controlled synthesis of patterned W18O49 nanowire vertical-arrays and improved field emission performance by in situ plasma treatment
- Highly stable superhydrophobic surfaces under flow conditions
- High-performance gas sensing achieved by mesoporous tungsten oxide mesocrystals with increased oxygen vacancies
- Characterization of underwater stability of superhydrophobic surfaces using quartz crystal microresonators.
- Bio-inspired dewetted surfaces based on SiC/Si interlocked structures for enhanced-underwater stability and regenerative-drag reduction capability
- Superaerophilic Carbon‐Nanotube‐Array Electrode for High‐Performance Oxygen Reduction Reaction
- Tensiometric Characterization of Superhydrophobic Surfaces As Compared to the Sessile and Bouncing Drop Methods.
- Roles of silanes and silicones in forming superhydrophobic and superoleophobic materials
- Long-term durability of superhydrophobic properties of butterfly wing scales after continuous contact with water
- Dual dimensional nanostructures with highly durable non-wetting properties under dynamic and underwater conditions.
- Developing a non-optical platform for impact dynamics analysis on nanostructured superhydrophobic surfaces using a quartz crystal microbalance
- Aqueous epoxy-based superhydrophobic coatings: Fabrication and stability in water
- Effect of liquid droplet surface tension on impact dynamics over hierarchical nanostructure surfaces.
- Superaerophilic Materials Are Surprising Catalysts: Wettability‐Induced Excellent Hydrogenation Activity under Ambient H2 Pressure
- 3D Porous Superhydrophobic CNT/EVA Composites for Recoverable Shape Reconfiguration and Underwater Vibration Detection
- Mimicking Human and Biological Skins for Multifunctional Skin Electronics
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