S- or O-containing blue OLED compounds lower triplet excitation energy to preserve color purity while reducing quenching and extending device lifetime.
By adding silica-reactive end groups during polymerization, this case improves filler dispersibility, wet grip, rolling resistance, and strength.
Narrow-band color conversion materials cut display emission width below 40 nm, improving color purity and gamut without Cd-based quantum dots.
Boron-containing polycyclic aromatic derivatives tune OLED organic layers to improve luminous efficiency and extend device longevity.
Organometallic OLED compounds use fused-ring cores and phosphorescent emitters to improve color saturation and emission efficiency in full-color displays.
An emission-auxiliary compound blocks exciton transfer to the hole transport layer, lowering OLED voltage while improving efficiency, color purity, and life.
Stable halogen-free perhydridosilazanes enable low-temperature silicon nitride deposition with low carbon and hydrogen incorporation.
Heating a polymer solution onto contact lenses improves surface hydrophilicity and lubricity without complex plasma or UV equipment.