A nitrile copolymer dispersant keeps carbon fibers stably dispersed at high concentration, improving electrode conductivity, output, and cycle life.
Amine and aromatic polymer dispersants keep carbon nanotubes separated, limiting viscosity rise and improving slurry uniformity for battery electrodes.
Bundle-type carbon nanotubes with controlled size ranges keep dispersions stable while preserving conductivity, film thickness, and battery cycle life.
Highly oriented carbon nanotube assembled wires avoid dispersing agents, improving breaking strength while preserving conductivity and shapeability.
High-shear mixing with surfactants or POSS hyperdispersants debundles carbon nanotubes while limiting damage, viscosity issues, and conductivity loss.
A mediator compound with carboxymethyl cellulose helps separate CNT bundles in water, improving dispersion stability and battery cycle life.
Matching dispersant and carbon HSP values improves positive electrode slurry dispersion, lowering battery resistance while limiting gas release.
Tuned carbon nanotube surface area, bulk density, and resistance improve dispersibility and conductivity while keeping battery slurries low in viscosity.
Tailored CNT crystallinity and dispersant use curb aggregation, enabling conductive, adhesive electrode membranes for lithium-ion batteries.
A dual-conductive cathode balances fine fibers and CNT secondary particles to improve dispersion, lower resistance, and raise output and capacity.