See how nonporous polymeric particles in a foamed aqueous composition achieve blackout performa
See how nested white foam layers confine carbon black in light-blocking coatings, preventing so
See how porous polymeric particles with embedded colorant replace dense inorganic pigments to b
See how a carbon nanotube coating absorbs solar radiation efficiently while minimizing thermal
NiCr-based multilayer films preserve structural color and panel aesthetics while allowing 20-40 GHz mm-wave signals to pass through vehicle parts.
A phosphonic acid-copper absorber with alkoxysilane and phosphoric acid ester cuts low-polarity solvent use while keeping optical filter dispersion stable.
Copper oxide crystallites enable black composites to absorb visible light yet reflect near-IR and LiDAR radiation for reliable detection.
A multilayer dielectric-metal coating adds a light-absorbing layer to block selected radiation, cut solar transmittance, and keep transparency.
High cerium oxide and silica in a resin matrix improve radiation shielding while limiting peeling under large temperature fluctuations.
Targeted orange-red dye absorption offsets yellowing from blue light filtering, preserving white balance and display quality.
A metal-compound coating uses radiation-driven optical changes to measure dose quickly while avoiding temperature and thickness errors.
A light-blocking coating uses titanium dioxide and chemical blockers to shield composites from UV damage while preserving crack resistance and EME compliance.
A light-blocking coating uses titanium dioxide and chemical blockers to shield composites from UV and visible light without heavy, crack-prone layers.
Multistage polymer particles with a water-occluded core improve light scattering and hiding in one-coat paints without TiO2 crowding.
Multistage polymer particles and a 500-600 nm absorbing colorant improve one-coat hide while preserving whiteness and scattering efficiency.
Low-BET, low-oil-absorption silica delivers consistent matte powder coatings while preserving melt flow and surface appearance.
Co-polymerizing vinyl functionalized benzotriazole monomers into the polymer binder prevents TiO2 photocatalytic degradation and gloss loss.
Fluorocopolymer coatings reduce volatile organic compound emissions while maintaining high solids content and gloss retention through specific monomer ratios.
Covalently bonding triazine UV absorbers into resin matrices eliminates migration while maintaining gloss and color stability.
Silane-modified ZnO nanoparticles form aggregates within a hydroxyalkyl cellulose binder to create transparent UV-absorbing coatings.
Silica nanoparticles functionalized with melanin pigments absorb visible light within a flexible polymeric matrix.
Porous metal oxide spheres generate structural color via light interference, providing stable and tunable properties without chemical changes.
A curable silicone composition uses a silane-modified polymer to stabilize high filler loadings within the matrix.
A composite photosensitive structure integrates a near-infrared absorption layer directly onto the sensor element.
A continuous inorganic film absorbs ultraviolet radiation on polymer substrates.
A one-step reaction of polyphenol, hexamethylene tetramine, and protonic acid creates a multifunctional leather finishing agent.
A high temperature coating on carbon-car composite substrates uses a crystallized metal carbide undercoat and a complex oxide overcoat.