Lithium-rich cathode material doped with lithium manganate at Mn site, and preparation method of lithium-rich cathode material
A lithium-rich positive electrode material, lithium heteromanganate technology, applied in battery electrodes, electrical components, circuits, etc., can solve the problems of poor cycle performance, poor rate performance, and voltage drop, so as to reduce reaction and improve thermal stability , Improve the effect of voltage drop
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Embodiment 1
[0040] (1) Lithium acetate, manganese acetate, iron nitrate and citric acid are mixed according to the molar ratio of 2.0:0.95:0.05:3.6, dissolved in high-temperature pure water at 60°C, stirred for 10 hours, until the solution is uniform and clear, and then passed through Ultrasonic gas atomization (nitrogen pressure 1.2MPa) to form a prefabricated spherical powder, and then calcined at a high temperature, the sintering temperature is controlled at 450°C, and the sintering time is 5 hours to remove moisture and decompose organic matter to obtain spherical Li 2 MnO 3 powder;
[0041] (2) Use a high-energy mixer to prepare the spherical Li 2 MnO 3 Mix the powder (A powder) and uncoated NCM523 (B powder) uniformly for 1 hour, control D 50 (A powder) is D 50 14.5% of (B powder), the doping amount of A powder is 1.6%;
[0042] (3) Use Al 2 o 3 The powder is subjected to surface coating treatment on the above mixed powder, and the coating process: Al 2 o 3 The powder is fi...
Embodiment 2
[0046] (1) Lithium acetate, manganese chloride, titanium nitrate and aminoacetic acid are mixed according to the molar ratio of 2.1:0.9:0.1:3.72, dissolved in high-temperature pure water at 65°C, stirred for 15 hours until the solution is uniform and clear, and then Through ultrasonic gas atomization (nitrogen pressure 1.5MPa), a prefabricated spherical powder is formed, and then calcined at a high temperature, the sintering temperature is controlled at 500°C, and the sintering time is 5 hours to remove moisture and decompose organic matter to obtain spherical Li 2 MnO 3 powder;
[0047] (2) Use a high-energy mixer to uniformly mix the above-prepared powder (A powder) and uncoated NCM523 (B powder) for 2 hours, and control D 50 (A powder) is D 50 15% of (B powder), the doping amount of A powder is 1.5%;
[0048] (3) Using TiO 2 Powder is used for surface coating treatment of the above mixed powder, coating process: TiO 2 The powder is first homogenized in a stirred tank a...
Embodiment 3
[0052] (1) Mix lithium nitrate, manganese chloride, iron nitrate, titanium nitrate and ammonia water according to the molar ratio of 2.2:0.95:0.03:0.02:3.84, dissolve in high-temperature pure water at 55°C, stir for 20 hours, until the solution Uniform clarification, and then through ultrasonic gas atomization (nitrogen pressure 1.25MPa) to form prefabricated spherical powder, and then calcined at high temperature, control the sintering temperature of 600 ° C, sintering time of 6 hours, remove moisture and decompose organic matter to obtain spherical Li 2 MnO 3 powder;
[0053] (2) Use a high-energy mixer to uniformly mix the above-prepared powder (A powder) and uncoated NCM424 (B powder) for 3 hours, and control D 50 (A powder) is D 50 14.6% of (B powder), the doping amount of A powder is 3.0%;
[0054] (3) Use ZrO 2 Powder is used for surface coating treatment of the above mixed powder, coating process: ZrO 2 The powder is first homogenized in a stirred tank and dispers...
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