High-voltage lithium ion battery cathode material of copper-doped lithium manganate and preparation method thereof
A technology for lithium ion batteries and positive electrode materials, applied in battery electrodes, circuits, electrical components, etc., can solve the problems of low reaction yield, uneven particles, harsh conditions, etc., and achieve simple preparation process, uniform particle size, and particle size. small effect
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Embodiment 1
[0030] The preparation chemical formula is LiMn 1.9 Cu 0.1 o 4 Lithium manganese oxide cathode material. According to the stoichiometric ratio of 1:1.9:0.1, weigh 0.1mol lithium acetate, 0.19mol manganese acetate, and 0.01mol copper acetate with deionized water to prepare a mixed solution with a metal ion concentration of 1 mol / L, and dissolve 0.3mol citric acid into Prepare a solution with a concentration of 1 mol / L in deionized water, add the prepared metal salt mixed solution and citric acid solution into the reactor uniformly and continuously for reaction, control the reaction temperature at 70 °C, and then add ammonia water dropwise to control the pH 6, the obtained solution was continuously stirred and evaporated to dryness to obtain a gel, which was then dried in vacuum at 120° C. for 12 hours to obtain a gel precursor. The obtained gel precursor was pre-sintered at 400 °C for 5 h in an air atmosphere at a heating rate of 5 °C / min, followed by secondary sintering at ...
Embodiment 2
[0032] The preparation chemical formula is LiMn 1.9 Cu 0.1 o 4 Lithium manganese oxide cathode material. According to the stoichiometric ratio of 1:1.9:0.1, weigh 0.1mol lithium acetate, 0.19mol manganese acetate, and 0.01mol copper acetate with deionized water to prepare a mixed solution with a metal ion concentration of 0.5mol / L, and dissolve 0.6mol oxalic acid to Prepare a solution with a concentration of 0.5 mol / L in deionized water, and add the prepared metal salt mixed solution and oxalic acid solution into the reactor uniformly and continuously to react at the same time, control the reaction temperature at 80 °C, and then add ammonia water dropwise to control the pH as 7. The obtained solution was continuously stirred and evaporated to dryness to obtain a gel, which was then dried in a vacuum at 110° C. for 8 hours to obtain a gel precursor. The obtained gel precursor was pre-sintered at 450 °C for 1 h in an air atmosphere with a heating rate of 4 °C / min, followed by...
Embodiment 3
[0034] The preparation chemical formula is LiMn 1.5 Cu 0.5 o 4 Lithium manganese oxide cathode material. According to the stoichiometric ratio of 1:1.5:0.5, weigh 0.1mol lithium acetate, 0.15mol manganese acetate, and 0.05mol copper acetate with deionized water to prepare a mixed solution with a metal ion concentration of 1.5 mol / L, and dissolve 0.3mol malic acid into Prepare a solution with a concentration of 1.5 mol / L in deionized water, add the prepared metal salt mixed solution and malic acid solution to the reactor uniformly and continuously for reaction, control the reaction temperature at 90 °C, and then add ammonia water dropwise to control the pH was 7, the obtained solution was continuously stirred and evaporated to dryness to obtain a gel, which was then placed in vacuum drying at 115° C. for 10 h to obtain a gel precursor. The obtained gel precursor was pre-sintered at 500 °C for 5 h in an air atmosphere with a heating rate of 5 °C / min, followed by secondary sin...
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