Bioinspired superhydrophobic coatings of carbon nanotubes and linear pi systems based on the "bottom-up" self-assembly approach.
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Summary
This well-dispersed nanocomposite can be coated on to glass, metal, and mica surfaces to give superhydrophobic self-cleaning surfaces with water contact angles of 165-170° and a sliding angle of less than 2° (see picture).
- Type
- article
- Published
- 2008-07-21
- Cited by
- 149
- References
- 72
- Access
- Open access
- OpenAlex
- https://openalex.org/W18604864
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:32642883
Keywords
Haplotype, Skull, Range (aeronautics), Biology, Zoology
References
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- RESISTANCE OF SOLID SURFACES TO WETTING BY WATER
- Lotus Effect Amplifies Light-Induced Contact Angle Switching
- Dispersion and alignment of carbon nanotubes in polymer matrix: A review
- Super-Hydrophobicity of Large-Area Honeycomb-Like Aligned Carbon Nanotubes
- A Composite from Poly(m‐phenylenevinylene‐co‐2,5‐dioctoxy‐p‐phenylenevinylene) and Carbon Nanotubes: A Novel Material for Molecular Optoelectronics
- Superhydrophobic bionic surfaces with hierarchical microsphere/SWCNT composite arrays.
- Recent Studies on Super-Hydrophobic Films
- Nanotubes from Carbon.
- Functionalized carbon nanotubes: properties and applications.
- Funktionalisierung von einwandigen Kohlenstoffnanoröhren
- On the range of applicability of the Wenzel and Cassie equations.
- On the Modeling of Hydrophobic Contact Angles on Rough Surfaces
- Fabrication and characterization of OLEDs using MEH-PPV and SWCNT nanocomposites
- Overcoming the insolubility of carbon nanotubes through high degrees of sidewall functionalization.
- High-Quality Single-Walled Carbon Nanotubes with Small Diameter, Controlled Density, and Ordered Locations Using a Polyferrocenylsilane Block Copolymer Catalyst Precursor
- Carbon nanotubes with small and tunable diameters from poly(ferrocenylsilane)-block-polysiloxane diblock copolymers.
Cited by
- Polysiloxane/multiwalled carbon nanotubes nanocomposites and their applications as ultrastable, healable and superhydrophobic coatings
- Self-Assembly of Organic Building Blocks with Directly Exfoliated Graphene to Fabricate Di- and Tricomponent Hybrids
- Solvothermal synthesis of microporous superhydrophobic carbon with tunable morphology from natural cotton for carbon dioxide and organic solvent removal applications
- Microscale engineering for advanced interfacial fluidics: From extreme microchannel heat transfer to resilient superhydrophobic conductive surfaces
- Formation of nano-structured core–shell micro-granules by evaporation induced assembly
- Fabrication of superhydrophobic surfaces by smoke deposition and application in oil–water separation
- A review on ‘self-cleaning and multifunctional materials’
- A tailored RAFT copolymer for the dispersion of single walled carbon nanotubes in aqueous media
- Preparation of highly stable superhydrophobic TiO2 surfaces with completely suppressed photocatalytic activity
- A corrosion-resistance superhydrophobic TiO2 film
- Directional motion of water drop on ratchet-like superhydrophobic surfaces
- Superhydrophobic surfaces with nanofibers or nanorods based on thiophene derivatives
- Stable superhydrophobic composite coatings made from an aqueous dispersion of carbon nanotubes and a fluoropolymer
- Fabrication of Bionic Superhydrophobic Manganese Oxide/Polystyrene Nanocomposite Coating
- Surface chemistry controlled superhydrophobic stability of W18O49 nanowire arrays submerged underwater
- Durable Superhydrophobic Surfaces Prepared by Spray Coating of Polymerized Organosilane/Attapulgite Nanocomposites.
- Biomimetic fabrication and characterization of an artificial rice leaf surface with anisotropic wetting
- A facile approach for artificial biomimetic surfaces with both superhydrophobicity and iridescence
- The influence of applied silica nanoparticles on a bio-renewable castor oil based polyurethane nanocomposite and its physicochemical properties.
- Remarkable regioisomer control in the hydrogel formation from a two-component mixture of pyridine-end oligo(p-phenylenevinylene)s and N-decanoyl-L-alanine.
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