Ultrashort laser ablation patterns continuous metal films into precise pixelated anodes for halide perovskite detectors without solvent damage.
A Zn-Te-Se core and zinc chalcogenide shell limit Te oxide formation, preserving narrow emission and stable cadmium-free display quantum dots.
A selenium ink with a traceless reducing agent forms a stable dispersion for substrate deposition.
Liquid-based selenium and Group 1b ink replaces costly vacuum systems, enabling high-throughput CIGS manufacturing with customizable composition.
A method adding low alpha lead to metal before refining separates lead and reduces 210Pb concentration.
Lead-tellurium oxide eutectic replaces insulating glass frits to lower contact resistance in solar cell contacts.
A selenium ink with a stable chemical compound disperses in a nitrogen-containing liquid carrier to deposit material on substrates.