Regarding the element reaction formulas in the lithium battery structure, the following reaction formulas are for reference. 1. The lithium cobalt oxide battery is oxidized at the anode. Lithium ions are released from carbon together with electrons: LiC6→xLi++xe−+C6LiC6→xLi++xe−+C6 At the cathode, lithium ions are absorbed by lithium dioxide, and the electrode is reduced because it is also received from the circuit Electron: Li1−xCoO2+xLi++xe−→LiCoO2Li1−xCoO2+xLi++xe−→LiCoO2 The overall reaction is: C6+LiCoO2⟷LixC6+Li1−xCoO22. The lithium iron phosphate battery is oxidized at the anode. Lithium ions are released from carbon together with electrons: LiC6→Li++e−+C6LiC6→Li++e−+C6 At the cathode, lithium ions are absorbed by lithium dioxide, and the electrode is reduced because it is also received from the circuit Electronics: LiFe(III)PO4+xLi++xe−→LiFe(II)PO4LiFe(III)PO4+xLi++xe−→LiFe(II)PO4FePO4+Li++e−→LiFePO4FePO4+Li++e−→ The overall reaction of LiFePO4 is: LiFePO4+6C→LiC6+FePO4. The above is the element reaction formula in the lithium battery pack
structure. For more information, please visit the official website of Grignard Battery. Measures for battery fire
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