Lithium titanate (LTO), as a cathode material, shows excellent safety performance due to its unique chemical and physical properties. The key point of lithium titanate anode material in PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC iron removal safety: when lithium titanate is used as the anode material, its potential platform is up to 1.55V, which is about 1V higher than the traditional graphite anode material. Lithium metal is highly active and can easily react with the electrolyte and release heat, which may cause fire or explosion.
PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC The high potential platform effectively prevents the negative electrode voltage from falling to below 0V, thus avoiding the phenomenon of lithium ions precipitated on the surface of the negative electrode to form lithium metal. Therefore, the high-potential platform significantly improves the safety of iron removal. In the process of lithium titanate material, its crystal structure hardly changes during charging and discharging, which is called "zero-strain material".
This characteristic means that in the charge-discharge cycle, lithium titanate does not form a solid electrolyte interface membrane with poor thermal stability like graphite. The decomposition of SEI membranes at high temperatures could trigger thermal runaway, causing the battery to catch fire or explode. Therefore, the zero-strain characteristics of lithium titanate further enhances the safety of batteries. PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC Lithium titanate iron removal to improve the safety of batteries.
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