A kind of binder for lithium ion battery and preparation method thereof
A lithium-ion battery and binder technology, applied in battery electrodes, secondary batteries, circuits, etc., can solve the problems of reducing the compatibility of electrode materials and SEI films, different components, etc., and achieve excellent stability, small expansion rate, The effect of improving stability
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Embodiment 1
[0028] A preparation method of a binder for a lithium ion battery, specifically comprising the following steps:
[0029] The binder includes 45 parts of polyfluoroethylene, 20 parts of carboxymethyl cellulose gel, and 16 parts of modified sodium polyacrylate.
[0030] The structural unit represented by the formula I of the polyfluoroethylene accounts for 30% of the mass of the polyfluoroethylene, and the structural unit represented by the formula II accounts for 30% of the mass of the polyfluoroethylene. The structural unit represented by the formula IV accounts for 10% of the mass of the polyfluoroethylene, and the structural unit represented by the formula IV accounts for 30% of the mass of the polyfluoroethylene.
[0031] Among them, R in polyfluoroethylene 1 is unsubstituted C 1 straight-chain alkyl; R 2 is unsubstituted C 2 carboxylic acid group; R 3 is unsubstituted C 3 straight-chain alkyl; R 4 for C 4 carboxylic acid group; R 5 is unsubstituted C 1 carboxylic...
Embodiment 2
[0042] A preparation method of a binder for a lithium ion battery, specifically comprising the following steps:
[0043] The binder includes 60 parts of polyfluoroethylene, 35 parts of carboxymethyl cellulose gel, and 22 parts of modified sodium polyacrylate.
[0044] The structural unit represented by the formula I of the polyfluoroethylene accounts for 45% of the mass of the polyfluoroethylene, and the structural unit represented by the formula II accounts for 20% of the mass of the polyfluoroethylene. The structural unit represented by the formula IV accounts for 15% of the mass of the polyfluoroethylene, and the structural unit represented by the formula IV accounts for 20% of the mass of the polyfluoroethylene.
[0045] Among them, R in polyfluoroethylene 1 is unsubstituted C 4 straight-chain alkyl; R 2 is unsubstituted C 6 carboxylic acid group; R 3 is unsubstituted C 8 straight-chain alkyl; R 4 for C 8 carboxylic acid group; R 5 is unsubstituted C 8 carboxylic...
Embodiment 3
[0056] A preparation method of a binder for a lithium ion battery, specifically comprising the following steps:
[0057] The binder includes 50 parts of polyfluoroethylene, 25 parts of carboxymethyl cellulose gel, and 18 parts of modified sodium polyacrylate.
[0058] The structural unit represented by the formula I of the polyfluoroethylene accounts for 35% of the mass of the polyfluoroethylene, and the structural unit represented by the formula II accounts for 25% of the mass of the polyfluoroethylene, as shown in the formula III. The structural unit represented by the formula IV accounts for 10% of the mass of the polyfluoroethylene, and the structural unit represented by the formula IV accounts for 30% of the mass of the polyfluoroethylene.
[0059] Among them, R in polyfluoroethylene 1 is unsubstituted C 3 straight-chain alkyl; R 2 is unsubstituted C 3 carboxylic acid group; R 3 is unsubstituted C 5 straight-chain alkyl; R 4 for C 6 carboxylic acid group; R 5 is ...
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