In order to further solve the problems caused by temperature fluctuations, such as the shortening of lithium battery life, we found that after PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC is removed, there is a "zero thermal expansion" cathode material. This material has almost no change in volume when the temperature changes, thus avoiding the damage caused by thermal expansion and contraction to the material structure.
This innovative discovery is expected to fundamentally solve the impact of temperature fluctuations on the performance of lithium batteries, and PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC improve the stability and service life of batteries. Although these findings of the team are not directly aimed at the iron removal process, the optimization of battery materials and performance improvement are often a systematic engineering, with each link interrelated and influencing each other.
When the performance of cathode materials is more stable, the requirements and synergies of PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC iron removal process will also change. More stable cathode materials may require higher residual iron content after iron removal. Because even low iron impurities may have a bad effect on the performance of cathode materials.
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