China is a major producer of lithium battery materials, and lithium batteries have been widely used in fields such as mobile phones, laptops, digital cameras, model airplanes, electric toys, electronic devices, electric vehicles, and hybrid vehicles. The performance of lithium-ion batteries mainly depends on the properties of the internal materials used, including positive electrode materials, negative electrode materials, electrolytes, separators, etc. The selection and quality of positive electrode materials directly determine the performance and price of lithium-ion batteries. The current research on positive electrode materials for lithium-ion batteries includes lithium cobalt oxide (Li ℃ oO2), lithium manganese oxide (LiMnO2), lithium iron phosphate (LiFePO4), lithium nickel oxide (LiNiO2), etc. There are currently two production processes for lithium-ion battery cathode materials: airflow pulverizer production process and mechanical pulverizer production process
The performance comparison of batteries produced from several materials is as follows:
Battery composition |
Lithium Iron Phosphate |
Lithium cobalt oxide |
Lithium manganate |
Nickel cobalt lithium |
safety |
good |
poor stability |
Acceptable |
Poor stability |
Environmental requirements |
conform to |
unsafe |
Acceptable |
unsafe |
Number of cycles |
good |
Acceptable |
poor |
Acceptable |
energy density |
Acceptable |
good |
Acceptable |
differ from |
Long term usage cost |
economy |
tall |
Acceptable |
tall |
Temperature tolerance |
Jia (-400 ℃ -700 ℃) can still be used normally |
Decline above 550 ℃ or below -200 ℃ |
Rapid decline above 500 ℃ |
Decline above 550 ℃ or below -200 ℃ |
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Application areas: lithium cobalt oxide, lithium manganese oxide, lithium iron phosphate, ternary materials, lithium carbonate, lithium nickel cobalt oxide, cobalt oxide, cobalt dioxide, etc