Specific carbon black DBP/CDBP and 5-15 nm carbon nanotubes lower internal resistance while preserving adhesion, discharge rate, and cycle life.
Solution-processed SiC nanowire channels cut power loss and short-channel effects while improving mobility and heat dissipation in transistors.
Two-stage pore activation enables uniform silicon placement inside porous carbon, limiting expansion, protecting the SEI film, and improving cycling.
Porous carbon particles with a silicon coating buffer volume expansion, suppress SiC formation, and improve lithium battery life.
Sized pores and carbon-silicon-carbon coatings contain silicon expansion, boosting Li-ion anode capacity and conductivity.
Selective protic solvent washing removes harmful SEI species from spent battery graphite while retaining passivation and restoring near-pristine performance.
Water-based comminution separates graphite-rich battery fractions before full discharge, cutting fire risk and wet-chemical load.
Dual dispersants keep carbon nanotubes uniformly dispersed and low in viscosity, improving electrode conductivity and electrolyte permeability.
Dual dispersants keep carbon nanotubes uniformly dispersed, limiting agglomeration and viscosity rise while improving electrode conductivity.
Graphene aerogels with sputtered metal collectors harvest mechanical energy in electrolyte while absorbing oil and impurities in marine environments.
High-shear exfoliation inside elastomer precursors avoids agglomeration and impurities, yielding uniform conductive composites for flexible sensors.
A one-step 750-840°C sintering route forms graphene-coated positive electrode particles with higher density and conductivity while limiting growth.
Solvothermally synthesized carbon quantum dots enable stable red micro-LED color conversion with high quantum yield and less excitation light leakage.
Electrochemical lithium plating at the anode-separator interface enables water-based recovery from spent Li-ion batteries while preserving graphite.
A comb-like PVP dispersant uses hydroxyl-bearing side chains to keep carbon nanotube slurries uniform, stable, and faster to disperse.