A heterocyclic emission-layer compound improves carrier recombination in OLEDs, lowering driving voltage while raising emission and quantum efficiency.
Specific film-forming electrolyte additives lower initial resistance in nonaqueous batteries while preserving cycle and storage characteristics.
Silicon-free lithium precursors enable volatile, thermally stable ALD/CVD deposition of uniform Li-containing films without silicon-related electrochemical drawbacks.
Fluorinated CVD precursors form lithium-ion battery films that improve electrode durability without sacrificing ion conductivity.
Specific amide-containing ring compounds lower initial battery resistance while preserving electrolyte stability and improving input/output performance.
Protective electrode films from a lithium borate additive lower internal resistance, especially at the positive electrode, in lithium secondary batteries.
Electrode films formed from a lithium borate electrolyte additive lower positive-electrode resistance and improve lithium secondary battery storage stability.
Matching refractive indices in the OLED electron-transport layer cuts reflection losses and improves light extraction with lower power demand.
A tailored nonaqueous electrolyte uses additive-driven SEI films to curb capacity fade and resistance growth during high-temperature storage.
A low-redox prelithiation solution enables uniform lithium insertion, boosts initial coulombic efficiency, and supports stable anode production.
By tuning electron-transport layer refractive index with an organic compound and alkali metal complex, this OLED case improves light extraction and lowers power use.
Continuous low-temperature addition stabilizes dihalo-substituted metalloid reactions to improve catalyst precursor purity and consistency.
Mixed alkali-metal cyanurate crystals address UV absorption and growth constraints while enabling double-to-sextuple frequency conversion.
Lithium cocrystals with organic anions and neutral molecules improve brain distribution, support lower dosing, and limit toxicity.