A coating with a cracking matrix reveals luminescent nanoparticles upon impact to detect internal structural damage.
An intermediary shell prevents ligand detachment and aggregation in polymer films, maintaining high quantum yield for stable light emission.
A photoluminescent target uses a thermally conductive skeleton to reemit temperature-dependent light for accurate interrogation.
Combining UVC, UVA, and IR upconverting pigments into a stable dispersion creates multi-colored emissions that prevent easy detection of printed documents.
A coating composition incorporating infrared fluorescent pigment re-radiates absorbed energy to enhance effective solar reflectance.
High refractive index binder in coloured coating composition raises light reflectance value while maintaining chroma intensity.
Fluorescent antioxidants enable layer thickness detection via spectroscopy, resolving paint adhesion trade-offs.
Ester-based solvents with controlled boiling points and surface tension enable uniform active layer formation in OLEDs.
Surface-modified zirconium dioxide nanocrystals in a polymer matrix enhance water vapor barrier properties and color point stability for phosphor-converted LEDs.
A lanthanoid-containing inorganic microparticle with a thin rare earth shell converts infrared light to visible emission.
A single-layer wavelength converter uses a polymeric matrix to distribute quantum dot and phosphor particles.
Aliphatic alcohol solvent evaporates after ejection to increase ink viscosity, resolving the trade-off between ejectability and flatness.
A light conversion film absorbs ultraviolet light between the backlight and liquid crystal layer.
A quantum dot-polymer composite film uses cured photopolymerizable monomers to encapsulate nanocrystals.
Photoluminescent coating with indium particles and clear resin layer resolves metallic luster versus adhesiveness trade-off.
Grinding phosphate compounds with europium-activated strontium aluminate creates a dense surface layer that prevents strontium leaching in humid environments.
A surface top layer integrates luminescent and masking elements to hide patterns during daylight hours.
Low haze pigment particles replace dyes in non-hiding coatings to deliver transparency and color persistence without heavy metal toxicity.
A strontium aluminate mechanoluminescent material incorporates reduced zirconium ions to create deep trap levels for enhanced light emission.
Self-assembling brush block copolymers create selective near-infrared reflection without complex fabrication, enabling application on rough surfaces.
Polymer host materials encapsulate light-emissive nanoparticles, protecting them from oxygen and water exposure while maintaining their optical performance.
A stain formulation containing multiple fluorescent dyes enhances wood grain visualization through electromagnetic radiation absorption and emission.