Fluoride ions bind to surface metal ions in ZnSe nanocrystals, eliminating midgap trap states and boosting quantum yield to 99%.
A polymeric metal alkoxide assist layer generates secondary electrons to improve acid-generation efficiency in EUV photoresists.
Captured ions stabilize charge carriers in two-dimensional materials, enabling reversible doping without complex fabrication.
A hierarchical nanostructured optical substrate deposits metal on etched surfaces to boost Raman scattering and fluorescence signals.
A continuous polymer synthesizer uses a rotating stage to move reaction sites through fixed dispensing and imaging stations.
Bipolar pulsed current deposits nanocrystalline alloys with controlled grain sizes, resolving defects like cracks while maintaining deposition rates.
A core-shell synthesis method using ultrasonic irradiation to stabilize CZTS nanoparticles against oxidation and reduce electron loss in solar cells.
A fluorinated dispersant with hydrophobic chains and head groups adsorbs onto carbon nanotubes to improve water dispersion.
A fullerene-containing magnesium alloy electrode reduces sheet resistance while maintaining high light transmittance in top-emission devices.
Carbon dioxide carbonizes zinc slurry in a pressurized reactor, eliminating acid leaching wastewater and reducing energy consumption.
A crosslinkable random graft copolymer provides a neutral wetting surface that enables perpendicular orientation of self-assembled block copolymer domains.
Simultaneous growth of apatite cores and graphitic shells overcomes synthesis condition consistency issues while enabling reproducible mass production.
Cellulose nanocrystal and polyvinyl alcohol blend creates multilayered films with enhanced mechanical strength.
Rare earth conversion and hydrophilic coatings protect metal substrates.
Density gradient ultracentrifugation separates double-walled carbon nanotubes using non-ionic amphiphilic surfactants to alter buoyant densities.
A gold-coated upconverting nanophosphor converts near-infrared radiation into visible light emission through a core-shell structure.
Three-zone nanocrystal design minimizes reabsorption energy transfer to boost photoluminescence quantum yield in solid-state lighting.
A single-phase composition of hydrocarbyl amine, carbon source, and acid produces graphene quantum dots with controlled size.