A kind of preparation method of spherical lithium ion battery positive electrode material and its precursor
A technology of lithium ion battery and positive electrode material, which is applied in battery electrodes, circuits, electrical components, etc. to achieve good cycle performance and good charge-discharge reversibility.
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Embodiment 1
[0021] Preparation of nano-nickel hydroxide: 0.015mol of NiCl 2 ·6H 2 0, 0.03mol of NaOH, respectively dissolved in 25mL water to form a solution, mix the two in a reaction kettle, place them in an oven at 180°C for 24 hours, separate and dry to obtain nano-nickel hydroxide .
[0022] Preparation of lithium-ion battery cathode material: 0.25 g of the prepared nano-nickel hydroxide was dispersed in 50 mL of distilled water, and 2.57 g of CoCl 2 ·6H 2 O was dissolved in the above system, and the resulting mixture was placed in a reaction kettle and reacted in an oven at 200 °C for 24 hours. After the reaction was completed, it was naturally cooled to room temperature, centrifuged and dried at 60 °C to obtain spherical lithium-ion battery materials. precursor, whose shape is as figure 1 shown in a. Depend on figure 1 It can be seen that the precursor is in the form of spherical particles, and its particle size distribution is relatively uniform, mainly between 8-10 mi...
Embodiment 2
[0025] 0.25 g of the prepared nano-nickel hydroxide was dispersed in 50 mL of distilled water, and 1.93 g of CoCl 2 ·6H 2 O is dissolved in the above system, and the resulting mixture is placed in a reaction kettle and reacted in an oven at 200 °C for 24 hours. After the reaction is completed, it is naturally cooled to room temperature, centrifuged and dried at 60 °C to obtain a spherical lithium-ion battery material precursors.
[0026] Take 1 g of the lithium-ion battery material precursor prepared in the above steps and grind and mix them with 0.28 g of LiOH. After mixing, program the temperature in a muffle furnace to 500 ° C for 5 hours, then calcinate at 750 ° C for 12 hours, and cool naturally After that, the spherical lithium-ion battery material (LiNi 0.23 co 0.77 o 2 ).
Embodiment 3
[0028] 0.25 g of the prepared nano-nickel hydroxide was dispersed in 50 mL of distilled water, and 1.28 g of CoCl 2 ·6H 2 O was dissolved in the above system, and the resulting mixture was placed in a reaction kettle and reacted in an oven at 200 °C for 24 hours. After the reaction was completed, it was naturally cooled to room temperature, and dried at 60 °C after centrifugation to obtain spherical lithium-ion battery materials. Precursor.
[0029] Take 1 g of the lithium-ion battery material precursor prepared by the above steps and grind and mix them with 0.28 g of LiOH. After mixing, program the muffle furnace to 500 ° C for 5 hours, then calcinate at 750 ° C for 12 hours, and cool naturally After that, the spherical lithium-ion battery material (LiNi 0.44 co 0.56 o 2 ).
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