See how interconnected conductive nano-filaments coated with Si, Ge, or Sn enable strain relaxa
A porous electro-spun filament network with thin electro-active coatings absorbs strain, preserves conductivity, and extends battery cycle life.
Pressurized activation with constant-current and constant-voltage charging curbs gas generation and abnormal capacity rise in lithium-rich manganese oxide cells.
X-ray diffraction maps positive-electrode SOC to reveal lithium electrodeposition distribution and support charging control before capacity loss.
An electric field removes residual washing solution from cathode active material after washing, cutting drying time and reducing lithium-related safety risks.
Elastic polymer networks protrude into high-capacity electrode material to absorb cycling expansion, prevent pulverization, and extend battery life.
Plasma treatment and staged copper plating improve layer adhesion and plating uniformity in lithium battery composite substrates.
Carbonized fabric and metal electroplating create a porous sulfur cathode that raises conductivity, sulfur loading, and cell stability.
Wet electrochemical deposition forms controlled metal oxide coatings on cathode materials, improving cycling stability without ALD or CVD complexity.