A newly developed photothermal superhydrophobic coating combines nanoflower-like double-shell phase-change microcapsules with a low-surface-energy fluorosilane matrix. Under simulated icing conditions,...
Researchers have developed a stress-responsive self-healing coating that combines TiO₂-modified amino-functionalised hollow mesoporous silica nanoparticles with the corrosion inhibitor sodium phytate....
Researchers have developed a UV-curable biomimetic coating that mimics the surface of rose petals, combining excellent anti-icing performance with high optical transparency and environmental durability....
Nanoparticles, smart polymers and fluoropolymer hybrids are redefining what a surface can do. Dr. Eugene Caldona, assistant professor at North Dakota State University’s Department of Coatings and Polymeric...
A new super-lubricating photothermal anti-icing coating uses a self-similar porous structure derived from fly ash to retain lubricant and enable active de-icing. The system combines passive superlubricity...
Researchers have developed a high-performance epoxy resin film that combines MXenes with dynamic diselenide bonds, enabling efficient photothermal self-healing. The new formulation overcomes the brittleness...
Researchers have developed a smart corrosion-warning coating based on chitosan microspheres encapsulating phenolphthalein. The pH-responsive system visibly signals localised corrosion through a striking...
Researchers have synthesised perfectly alternating linear-dendritic copolymers using dithiol–yne click chemistry. The approach combines bis-MPA dendrons with linear dithiol spacers, offering precise...
Researchers have developed a high-strength conductive hydrogel based on a deep eutectic solvent and liquid metal nanoparticles. The material combines mechanical robustness, anti-drying and freezing resistance,...
A European Coatings survey reveals that antimicrobial, anti-corrosion and self-cleaning technologies are driving the smart coatings market – but significant barriers remain.
The Plasreco project is developing silicon-based functional coatings applied by atmospheric plasma as a sustainable alternative to PFAS-based treatments.
Nanomaterials are increasingly shaping how the coatings industry approaches sustainability – not as a short-term response to regulatory pressure, but as a long-term materials strategy. Researchers and...
A newly developed aromatic siloxane coating with an α-aminophosphonate covalent structure provides cotton and silk with high flame retardancy, antibacterial activity and exceptional transparency, while...