Doped high-nickel high-voltage NCM positive electrode material and preparation method thereof
A cathode material, high-voltage technology, applied in battery electrodes, chemical instruments and methods, circuits, etc., can solve the problems of difficult to control stoichiometric ratio, uneven product particle size distribution, poor electrochemical cycle performance, etc., to improve oxygen Utilization rate, reduction of cation mixing, perfect effect of layered structure
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Embodiment 1
[0048] A doped high-nickel high-voltage NCM positive electrode material provided by a preferred embodiment of the present invention, its preparation method includes the following steps: dissolving 0.85 mol of nickel sulfate and 0.025 mol of manganese nitrate in 500 mL of deionized water to completely dissolve Obtain solution A; dissolve 0.10 mol of cobalt sulfate and 0.025 mol of manganese nitrate in 250 mL of deionized water to obtain solution B; dissolve 2.0 mol of NaOH in 500 mL of fresh deionized water to obtain solution C ; Dissolve 150ml of concentrated ammonia water in 150mL of fresh deionized water to completely dissolve it to obtain solution D;
[0049] Add solutions A, B, C, and D at a certain speed and flow them in parallel at a stirring speed of 600rpm with N 2 Co-precipitate in the protected reactor, control the flow rate of the solution so that the four solutions are added at the same time and the temperature in the reactor is controlled at 50-80 °C; after the ad...
Embodiment 2
[0054] A doped high-nickel high-voltage NCM positive electrode material provided by a preferred embodiment of the present invention, its preparation method includes the following steps: dissolving 0.85 mol of nickel sulfate and 0.025 mol of manganese nitrate in 500 mL of deionized water to completely dissolve Obtain solution A; dissolve 0.10 mol of cobalt sulfate and 0.025 mol of manganese nitrate in 250 mL of deionized water to obtain solution B; dissolve 2.0 mol of NaOH in 500 mL of fresh deionized water to obtain solution C ; Dissolve 150ml of concentrated ammonia water in 150mL of fresh deionized water to completely dissolve it to obtain solution D;
[0055] Add solutions A, B, C, and D at a certain speed and flow them in parallel at a stirring speed of 600rpm with N 2 Co-precipitate in the protected reactor, control the flow rate of the solution so that the four solutions are added at the same time and the temperature in the reactor is controlled at 50-80 °C; after the ad...
experiment example
[0072] To the present invention prepares lithium ion battery cathode material Li[Ni 0.85 co 0.10 mn 0.05 ] 0.9995 [Y(PO 3 ) 3 ] 0.0005 o 2 X-ray diffraction experiments and scanning electron microscope observations, such as figure 1 , figure 2 shown.
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