Take graphite as an example, two crystal structures, the different proportions of these two structures in graphite will affect the properties of the material. Different crystal structures will affect the diffusion path and lithium embedded potential, and then affect the efficiency of PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC iron removal. The degree of order of the crystal structure can be described by the degree of graphitization. The larger the order, the easier the carbon material is to graphitization, the higher the order of the crystal structure, the less the corresponding lattice defects, and the less the electron migration resistance.
If the crystal structure has many defects or irregularities, it may affect the ion exchange or chemical reaction in the process of iron removal, thus affecting the efficiency of PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC iron removal. For iron oxide cathode materials, such as hematite has a tripartite crystalline structure, its crystal structure affects the embedding and removal process of lithium. In the process of iron removal, if the crystal structure is unstable or changes greatly in the reaction process, the efficiency of iron removal may be reduced.
In the process of lithium removal, repeated reaction and generation may cause changes in the crystal structure, which may affect the efficiency of iron removal, because the PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC iron removal process may be related to the integrity of the crystal structure and the diffusion of ions in the crystal.
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