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.