Nano magnesium lithium silicate coated high-nickel positive electrode material as well as preparation method thereof and application thereof
A technology of lithium magnesium silicate and positive electrode materials, applied in the direction of positive electrodes, battery electrodes, active material electrodes, etc., can solve problems such as inability to fully coat, achieve the effects of reducing side reactions, improving stability, and good barrier
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Embodiment 1
[0033] This embodiment provides a nano-lithium magnesium silicate coated high-nickel positive electrode material, the preparation method of which comprises the following steps:
[0034] (1) Preparation of nano-lithium magnesium silicate
[0035] 5.00g of H 2 SiO 3 Add it to a beaker with 1L of pure water, then add 1.79g LiOH·H while stirring 2 O and 2.49g Mg(OH) 2 , continue to stir for 30 minutes after the addition is completed, and finally spray and collect nano-magnesium lithium silicate Li 2 Mg 2 (SiO 3 ) 3 ;
[0036] (2) Mixing
[0037]Combine battery-grade lithium hydroxide with high-nickel cathode material precursor Ni 0.82 co 0.12 mn 0.06 (OH) 2 Add it into a high-speed mixer at a molar ratio of 1.04:1 and mix for 25 minutes until it is evenly mixed to obtain a mixed material;
[0038] (3) Primary roasting
[0039] The mixed material obtained in step (2) is roasted in an oxygen atmosphere roller furnace at 750°C for 12 hours. After the roasting is complet...
Embodiment 2
[0043] This embodiment provides a nano-lithium magnesium silicate coated high-nickel positive electrode material. 2 Mg 2 (SiO 3 ) 3 And a roasted semi-finished product; a roasted semi-finished product and nano-lithium magnesium silicate Li 2 Mg 2 (SiO 3 ) 3 Mix evenly according to the weight ratio of 1:0.0033, then roast in an oxygen atmosphere roller furnace at 320°C for 6 hours, cool naturally to room temperature after roasting, pulverize after being released from the furnace, and pass through a 400-mesh sieve to obtain the described Nano-lithium magnesium silicate coated high-nickel cathode material.
Embodiment 3
[0045] This embodiment provides a nano-lithium magnesium silicate coated high-nickel positive electrode material. 2 Mg 2 (SiO 3 ) 3 And a roasted semi-finished product; a roasted semi-finished product and nano-lithium magnesium silicate Li 2 Mg 2 (SiO 3 ) 3 Mix evenly according to the weight ratio of 1:0.0050, then roast in an oxygen atmosphere roller furnace at 320°C for 6 hours, cool naturally to room temperature after roasting, pulverize after being released from the furnace, and pass through a 400-mesh sieve to obtain the described Nano-lithium magnesium silicate coated high-nickel cathode material.
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