A fluorinated pyridine and phosphite additive suppresses electrolyte decomposition and metal dissolution by forming a stable passivation film.
Controls PVDF copolymer melting and crystallinity to keep low-dielectric battery binder dispersions stable and precipitation-resistant.
Imidazole-based electrolyte additives trap PF5, stabilize the SEI film, and suppress high-temperature gas generation in lithium secondary batteries.
A liquid-electrolyte exchange in ionogel pores removes trapped water and alcohol byproducts while preserving ion transport for lithium-ion batteries.
A carbonate-ester electrolyte with a specific additive lowers initial resistance and suppresses cathode side reactions for faster charging.
A halogen-substituted electrolyte additive forms stable electrode films to lower discharge resistance, suppress gas, and preserve high-temperature capacity.
Dual-additive electrolyte chemistry stabilizes the SEI film to limit LiPF6 side reactions, gas generation, and resistance growth at high temperature.
Borate-based lithium salts form a low-resistance SEI film that suppresses LiPF6 decomposition and improves high-temperature cycle life.
A polyarylene sulfide seal with epoxide and (meth)acrylate groups improves metal adhesion and limits electrolyte leakage at high temperatures.
An additive electrolyte system captures PF5 and strengthens SEI formation to suppress gas generation and preserve lithium battery performance at high temperature.