LiNixCo1-x-yMnyO2 cathode material coated with boron-lithium composite oxide and preparation method thereof
A composite oxide, nickel-cobalt-lithium manganese oxide technology, applied in battery electrodes, electrochemical generators, electrical components, etc., can solve problems such as poor cycle stability, achieve low cost, reduce side reactions, and improve chemical stability. Effect
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Embodiment 1
[0022] Embodiment 1: A kind of preparation method of the nickel-cobalt-lithium-manganese oxide cathode material coated with boron-lithium composite oxide on the surface is completed according to the following steps:
[0023] 1. Weigh the compounds of lithium source and boron source respectively according to the stoichiometric ratio, and prepare a mixed solution of Li:B=2:1 with dehydrated alcohol under stirring condition;
[0024] ②Based on the mass ratio of LiNi x co 1-x-y mn y o 2 :α-Li 4 B 2 o 5 The ratio of =1:0.06 weighs the positive electrode material, adds the positive electrode material to the mixed solution obtained in step ①, and ultrasonically disperses for 2 hours to obtain a suspension;
[0025] ③Under stirring conditions, slowly add a dispersant to the suspension obtained in step ② until the system is viscous, and the dispersant is 9% of the suspension mass;
[0026] ④ Place the viscous substance obtained in step ③ in an oven, dry and evaporate to obtain a...
Embodiment 2
[0031] Embodiment 2: A kind of preparation method of the nickel-cobalt-lithium-manganese oxide cathode material coated with boron-lithium composite oxide on the surface is completed according to the following steps:
[0032] 1. Weigh the compounds of lithium source and boron source respectively according to the stoichiometric ratio, and prepare a mixed solution of Li:B=2:1 with dehydrated alcohol under stirring condition;
[0033] ②Based on the mass ratio of LiNi x co 1-x-y mn y o 2 :α-Li 4 B 2 o 5 The ratio of =1:0.10 weighs the positive electrode material, adds the positive electrode material to the mixed solution obtained in step ①, and ultrasonically disperses for 1.1h until it is uniformly dispersed to obtain a suspension;
[0034] ③Under stirring conditions, slowly add a dispersant to the suspension obtained in step ② until the system is viscous, and the dispersant is 10% of the mass of the suspension;
[0035] ④ Place the viscous substance obtained in step ③ in a...
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Abstract
Description
Claims
Application Information
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