A water- or alcohol-soluble polymer binder in a carbon network electrode improves adhesion, mechanical stability, and cleaner battery manufacturing.
A lithium-containing polyoxazoline layer improves SEI behavior in thick electrodes, reducing lithium plating and extending fast-charge cycle life.
A lithium-containing polyoxazoline layer improves ion transfer and LiF-rich SEI formation, reducing lithium precipitation in thick fast-charge electrodes.
Contorted conjugated ladder macromolecules boost electron and lithium-ion transport, enabling sub-minute charging and long cycle life.
A Zn-doped chromium vanadate spinel electrode uses a conductive carbon network to balance supercapacitor storage with hydrogen evolution activity.
A dry halogenation-reduction route forms MXene with fewer surface groups, improving Li-ion intercalation and simplifying production.
A non-planar HATN-PDI polymer boosts organic pseudocapacitor capacity, rate capability, and 50,000-cycle stability for negative electrodes.
A laser-scribed graphene-MnO2 cell array boosts ion transport and surface area to deliver high-voltage microsupercapacitors with strong cycle stability.