A dual adhesive tape layout grounds display components while limiting wrinkles and pseudo sticking to improve foldable waterproofing and shielding.
An ionic polymer and curable silicone electrode layer avoids water-loss conductivity drop, skin residue, and irritation in wearable sensing.
A layered conductive film uses paraffin-sealed flame retardant microholes to curb Li-ion overheating while preserving conductivity and energy density.
Alkaline washing removes CNT dispersant residue while retaining binder and alkali content, improving film conductivity, adhesion, and solar cell durability.
Controlling krypton below 0.1 at.% in a transparent conductive film lowers resistance while suppressing yellowish tint in electrodes.
A mixed fine/coarse copper paste limits particle scattering during irradiation sintering, enabling conductive films with strong adhesion and low resistance.
Apollonian-packed graphene inks with CNT fillers cut voids and percolation threshold, enabling conductive printing on recyclable paper.
Raised CNT lines with wide openings break the conductivity-transparency tradeoff for transparent substrates and vehicle defrost heaters.
A conductive thermoadhesive and carrier layer simplify electrode attachment on smart garments while improving wash durability and textile safety.
Blackened multilayer metal wires cut touch-panel wire visibility while preserving conductivity in fine conductive films.