Preparation of lithium cobalt phosphate-lithium vanadium phosphate composite positive electrode material for lithium ion battery
A lithium vanadium phosphate, ion battery technology, applied in battery electrodes, phosphorus compounds, secondary batteries, etc., can solve the problems of poor cycle performance and rate performance, limited application of lithium ion batteries, low lithium ion diffusion coefficient, etc. The effect of balanced performance, high capacity and broad application prospects
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Embodiment 1
[0021] A preparation of lithium cobalt phosphate-lithium vanadium phosphate composite lithium ion battery positive electrode material, the chemical formula of the composite material is LiCoPO 4 -Li 3 V 2 (PO 4 ) 3 ,Proceed as follows:
[0022] 1) Mix 7.77g of lithium carbonate, 11.698g of ammonium metavanadate, 12.454g of cobalt acetate, and 23.004g of ammonium dihydrogen phosphate to obtain a mixture;
[0023] 2) Add asphalt and ethanol solvent to the above mixture, the mass ratio of asphalt to the mixture is 1:5, the volume ratio of ethanol solvent to the mixture is 2:1, and then ball mill in a planetary ball mill at a speed of 400r / min for 7h , to obtain the precursor powder;
[0024] 3) Dry the above precursor powder in an oven at 60°C;
[0025] 4) Transfer the dried precursor powder to a tube furnace, and calcine it under an argon atmosphere, raise the temperature to 500°C at a heating rate of 5°C / min, calcine at a constant temperature for 5 hours, and then raise th...
Embodiment 2
[0029] A preparation of lithium cobalt phosphate-lithium vanadium phosphate composite lithium ion battery positive electrode material, the chemical formula of the composite material is LiCoPO 4 -3Li 3 V 2 (PO 4 ) 3 ,Proceed as follows:
[0030] 1) Mix 3.885g of lithium carbonate, 7.0188g of ammonium metavanadate, 2.4908g of cobalt acetate, and 11.502g of ammonium dihydrogen phosphate to obtain a mixture;
[0031] 2) Add citric acid and ethanol solvent to the above mixture, the mass ratio of citric acid to the mixture is 1:10, the volume ratio of ethanol solvent to the mixture is 2:1, and then in the planetary ball mill at 400r / min Ball milling for 7 hours to obtain the precursor powder;
[0032] 3) Dry the above precursor powder in an oven at 100°C;
[0033] 4) Transfer the dried precursor powder to a tube furnace and calcine it in a nitrogen atmosphere. At a heating rate of 8 ℃ / min, raise the temperature to 400 ℃, calcine at a constant temperature for 8 hours, and then ...
Embodiment 3
[0037] A preparation of lithium cobalt phosphate-lithium vanadium phosphate composite lithium ion battery positive electrode material, the chemical formula of the composite material is LiCoPO 4 -5Li 3 V 2 (PO 4 ) 3 ,Proceed as follows:
[0038] 1) Mix 6.216g of lithium carbonate, 11.698g of ammonium metavanadate, 2.4908g of cobalt acetate, and 18.4032g of ammonium dihydrogen phosphate to obtain a mixture;
[0039] 2) Add glucose and ethanol solvents to the above mixture, the mass ratio of glucose to the mixture is 1:20, and the volume ratio of ethanol solvent to the mixture is 2:1, and then ball mill for 12 hours in a planetary ball mill at a speed of 400r / min , to obtain the precursor powder;
[0040] 3) Dry the above precursor powder in an oven at 80°C;
[0041] 4) The dried precursor powder was transferred to a tube furnace, and calcined in a mixed gas atmosphere of argon and hydrogen. The volume content of hydrogen in the mixed gas was 10%, and the heating rate was 0...
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