Activatable colorants let web substrates form color only in deformed regions, avoiding added printing and registration cost.
A peelable fiber web with a heat-melt adhesion layer transfers images to textiles without inversion, while keeping a soft feel and normal washing.
Controlling core and shell size variation within 30% improves emission efficiency, light stability, and quantum yield in semiconductor nanoparticles.
Thin-film precursor inks and salt rinsing improve perovskite solar cell stability while reducing leakage, corrosion, and charge transport limits.
Solution-processed perovskite precursor ink and salt rinsing improve charge transport while avoiding liquid-electrolyte leakage and corrosion.
Row and column address decoders cut crossbar wiring in arbiter arrays, easing IC routing space while preserving resource access.
Selective thermal transfer places color conversion elements on top-emitting devices, eliminating parallax and improving color saturation.
Calibrating multi-channel imaging heads equalizes optical properties to minimize swath-to-swath banding artifacts in regular pattern imaging.
Segmented printable film uses a backside light diffusion layer to resolve the contradiction between light transmission and interference in backlit displays.
A polyether-containing tie layer maintains adhesion stability in thermal dye transfer systems by limiting moisture absorption below three weight percent.
Thermal decomposition of unstable silver oxide yields metallic silver particles with narrow size distribution.
Pyrazolylazoaniline azo dye compounds with specific substituents balance color reproduction and lightfastness in thermal transfer recording.
Chemical vapor deposition replaces spin coating to eliminate particle contamination and enable double-sided imprinting.
Carbon nanofoam replaces magnetic particles and carbon black in toner formulations.
Modified pigments reduce dispersion viscosity, enabling thinner light-to-heat conversion layers with higher resolution.
A dry image receiving layer with a composite polymer binder matrix reduces sticking issues in high humidity while maintaining consistent dye density.
Pre-patterned LITI donor films enable selective nanostructured transfer, eliminating multi-step ablation waste and reducing fabrication costs.
Pattern-directing layers template transfer layers to preserve structural integrity during thermal imaging.
Segmented heating zones and reflective partitions maintain uniform film temperature without increasing drum diameter or device complexity.
Heat treatment of donor films improves surface roughness uniformity, preventing defects from uneven laser distribution.
Removing the support film minimizes mask distance to improve resolution while the resin protection layer prevents photosensitivity deterioration.
A heat-sensitive transfer image-receiving sheet uses a specific copolymer receptor layer to enhance dye transfer sensitivity.
A thermal image receiver element uses a dry receiving layer containing water-dispersible release agents and specific polymer binders.
A laser irradiation device uses a mask with varying light transmitting portions to control energy dose during organic layer transfer.
A photoresist composition with a binder resin and acryl resin improves exposure margins.