A narrow blue dopant with high- and low-triplet-energy hosts balances exciton confinement and charge transport for longer device life.
This OLED case uses exciplex and emitting moieties to reduce singlet-triplet energy gaps while preserving deep blue color.
Glass-particle layers help polymer films emit uniform light while resisting UV and weather.
Zirconium surface protection helps fluoride phosphors retain flux and color stability.
The case combines charge-transporting hosts, a sensitizer, and delayed fluorescence to favor Förster transfer and extend lifetime.
A matched-temperature OLED premix enables stable single-source evaporation with reduced complexity.
The sensitized layer transfers energy to fluorescent material with FWHM below 45 nm, improving OLED efficiency and service life.
Multidentate polymer ligands improve crystal stability, dispersion, brightness, and color purity in polymer matrices.
CdTe quantum dots and Ag plasmonic nanoparticles are co-doped in glass to amplify and tune light emission.
Specific organosilicon units and an organometallic curing agent help prevent embrittlement and coloring while preserving strength.
This scintillator uses tuned resin and phosphor content to retain brightness while improving impact resistance and moldability.
This case aligns OLED color-coordinate shifts with the MPCD direction using unequal red and green dopant dipole moments.