Segmenting amine actives and oxidizing agents into distinct phases prevents harmful interactions that generate malodours while maintaining cleaning performance.
Internal anionic group positioning on silicone chains prevents haze formation while maintaining fabric softness in liquid detergents.
A polyalkylene oxide graft copolymer enhances dye transfer inhibition in laundry detergent compositions.
Segmented detergent composition with hydrophobic particles and betaine polymers prevents grease redeposition while improving stain removal.
Dimetallic cyanide catalysts enable phosphating of alkoxylated secondary alcohols into versatile surfactant compounds.
Cationic polymer anchors silicone to fibers, maintaining softness across multiple wash cycles.
A cleaning liquid containing hydroxylamine and basic compounds removes etching residues from semiconductor substrates.
Mixing methyl glycine diacetic acid with glutamic acid diacetic acid stabilizes the liquid against crystallization while preserving cleaning efficacy.
Hexamethyldisiloxane and octamethyltrisiloxane mixtures achieve 31 mmHg vapor pressure to remove contaminants while meeting strict VOC emission regulations.
A cleaning composition removes etching residues from copper wiring using specific inhibitors and acids.
Cellulose hydrolysis enzymes degrade cellulose in contaminated packaging, reducing organic contaminants and lowering energy consumption for drying.
A liquid ancillary composition floats on traditional laundry liquids to deliver concentrated benefit agents directly into the wash cycle.
Polyamine additives stabilize high-concentration aqueous complexing agents, preventing precipitation at temperatures between zero and 50°C.