Additive-tuned mixed 3D/2D perovskites improve film quality and carrier mobility for efficient wide-bandgap perovskite/CIGS tandem cells.
Tandem carbene phosphors use TADF to raise quantum yield and speed radiative decay, enabling efficient blue OLED emission with better color tuning.
Metal and Cl doping lowers vacancy density in perovskites, suppressing oxygen-driven decomposition and improving solar-cell stability in air.
Dry fatty-acid powder lubrication improves deep drawing of aluminum cans while enabling easy aqueous removal and cleaner surfaces for coating.
Bulky PAd3 ligands tune steric and electronic properties to stabilize transition metal catalysts and raise cross-coupling yield and turnover.
Multidentate phosphite ligands tune nickel hydrocyanation catalysts to raise adiponitrile selectivity and cut catalyst loading.
Bulky PAd3 phosphine ligands tune steric and electronic effects to improve catalyst stability, yield, and turnover in cross-coupling reactions.
An exciplex-forming interlayer with delayed fluorescent compounds boosts OLED luminescence efficiency and extends lifespan without sacrificing brightness.
Formula 1 organometallic compounds in the emission layer improve exciton formation for brighter, faster blue light emission.
Unlike low-yield, unselective 18F-SFB workflows, air-stable Au(III) complexes label biomolecules selectively in water within 15 minutes.
Glyme-stabilized SF5− enables mild deoxofluorination across diverse substrates.
A filtered, low-temperature process produces cesium halide with yields up to 99.9% for higher-performing perovskite composites.