Preparation method of anode material LiNi0.5Mn0.5O2 of battery
A battery positive electrode and molar ratio technology, which is applied to battery electrodes, circuits, electrical components, etc., can solve problems such as difficult to achieve uniform mixing of raw materials, and achieve the effect of simple preparation method, uniform mixing of raw materials, and simplified preparation steps
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Embodiment 1
[0018] Battery cathode material LiNi 0.5 mn 0.5 o 2 method of preparation,
[0019] a. Dissolve nickel nitrate, manganese nitrate and lithium nitrate into deionized water according to the molar ratio of 0.5︰0.5︰1.05 to form a solution, and add NH to the solution 4 NO 3 , NH 4 NO 3 The molar ratio to nickel nitrate is 0.005:1, stir evenly;
[0020] b. The solution prepared in step a is subjected to ultrasonic spray pyrolysis, the ultrasonic frequency is 1.8 MHz, and the pyrolysis temperature is 950° C. to obtain a powder;
[0021] c. Calcining the powder obtained in step b at 700° C. for 12 hours to obtain the finished product.
Embodiment 2
[0023] Battery cathode material LiNi 0.5 mn 0.5 o 2 method of preparation,
[0024] a. Dissolve nickel nitrate, manganese nitrate and lithium nitrate into deionized water according to the molar ratio of 0.5︰0.5︰1.2 to form a solution, and add NH to the solution 4 NO 3 , NH 4 NO 3 The molar ratio to nickel nitrate is 0.05:1, stir evenly;
[0025] b. Perform ultrasonic spray pyrolysis on the solution prepared in step a, the ultrasonic frequency is 2 MHz, and the pyrolysis temperature is 990° C. to obtain a powder;
[0026] c. Calcining the powder obtained in step b at 900° C. for 5 hours to obtain the finished product.
Embodiment 3
[0028] Battery cathode material LiNi 0.5 mn 0.5 o 2 method of preparation,
[0029] a. Dissolve nickel nitrate, manganese nitrate and lithium nitrate into deionized water according to the molar ratio of 0.5︰0.5︰1.1 to form a solution, and add NH to the solution 4 NO 3 , NH 4 NO 3 The molar ratio with nickel nitrate is 0.025:1, stir evenly;
[0030] b. Perform ultrasonic spray pyrolysis on the solution prepared in step a, the ultrasonic frequency is 1.9 MHz, and the pyrolysis temperature is 980° C. to obtain a powder;
[0031] c. Calcining the powder obtained in step b at 890° C. for 8 hours to obtain the finished product.
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