A kind of nickel cobalt lithium manganese oxide cathode material and preparation method thereof
A technology of nickel-cobalt-lithium-manganese-manganate and cathode materials, which can be applied to battery electrodes, structural parts, electrical components, etc., and can solve problems such as poor cycle stability and poor high-rate capacity performance
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[0045] The preparation method of the above-mentioned nickel-cobalt lithium manganese oxide positive electrode material is specifically implemented according to the following steps:
[0046] Step 1, dispersing lanthanum nickelate nanocrystals in a dispersion solvent, and forming a highly dispersed suspension system of lanthanum nickelate nanocrystals by ultrasonic dispersion or high-energy stirring;
[0047] Among them, the size of lanthanum nickelate nanocrystals is 30nm-80nm, and the shape is granular or fibrous; it can be prepared by atomization thermal decomposition, CVD, sputtering deposition, high-energy ball milling, etc. Lanthanum nickelate nanocrystalline products.
[0048] The specific process of preparing lanthanum nickelate nanocrystals by atomization thermal decomposition method is as follows:
[0049] Weigh nickel acetate, lanthanum nitrate, and citric acid with a molar ratio of 1:1:1 and dissolve them in deionized water to obtain a solution with a mass concentra...
Embodiment 1
[0060] Step 1. Weigh nickel acetate, lanthanum nitrate, and citric acid with a molar ratio of 1:1:1 and dissolve them in deionized water to obtain a solution with a mass concentration of 5%. The atomized solution was transported to a tube furnace at 750°C at an average speed of 0.5cm / sec under air carrier gas, and the reaction product was collected in a collection filter at the end of the tube lumen to obtain lanthanum nickelate nanocrystals. Its SEM photos are as figure 2 As shown; using an ultrasonic reactor to disperse lanthanum nickelate nanocrystals in a mixed solvent of deionized water and ethylene glycol (deionized water: ethylene glycol mass ratio = 1:1), the formation of nickel acid with a mass concentration of 5% Highly dispersed suspension system of lanthanum nanocrystals;
[0061] Step 2. Mix the highly dispersed suspension system prepared in step 1 with the nickel-cobalt lithium manganate precursor powder (the nickel-cobalt lithium manganate precursor powder is ...
Embodiment 2
[0065] Step 1, using commercially available lanthanum nickelate nanocrystals (particle size is 30nm ~ 80nm), and using an ultrasonic reactor to disperse it in ethylene glycol to form a high dispersion of lanthanum nickelate nanocrystals with a mass concentration of 10% suspension system;
[0066] Step 2. Mix the highly dispersed suspension system prepared in step 1 with the nickel-cobalt lithium manganate precursor powder (the nickel-cobalt lithium manganese oxide precursor powder is made by mixing lithium carbonate, nickel oxide, cobalt carbonate, and manganese sulfate, and Ratio, Lithium Carbonate: Nickel Oxide: Cobalt Carbonate: Manganese Sulfate=1:0.6:0.2:0.2) Carry out ball milling and mixing in n-hexane, after mixing evenly, a mixed powder is obtained. In the mixed powder, lanthanum nickelate nanocrystals and The mass ratio of the nickel-cobalt-lithium-manganese-oxide precursor powder is 10%, and the mixed powder is sequentially dried and compacted under a pressure of 20...
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