Heat-treating lithium mixed metal oxide with hydride resolves insufficient charge-discharge capacity in non-aqueous electrolyte secondary batteries.
A liquid electrolyte combines fluoride salts with alkali metal amide and glyme solvents to enhance ion dissociation.
A copper current collector with controlled X-ray diffraction peak ratios enhances adhesion between the substrate and silicon active material layers.
A lithium secondary battery electrode composition uses a fluorine-based polymer agglomerate to enhance interfacial conductivity near the current collector.
Iridium oxide ink balances reaction currents to prevent carbon corrosion during startup cycles.
A lithium battery uses LiBF4 and fluorine-containing sulfur salts to form a stable solid electrolyte interface layer on electrode surfaces.
Housing liquid injecting holes penetrate one surface only to allow electrolyte entry without impacting the cell body.
A gradient porosity electrode structure enhances electrolyte permeation rates within the active material layer.