Lithium-rich manganese base material lithium ion battery anode and lithium ion battery provided with same
A lithium-ion battery, lithium-rich manganese-based technology, applied in battery electrodes, electrode carriers/current collectors, secondary batteries, etc., can solve the problems of poor cycle performance, obvious volume effect, poor rate performance, etc. resistance, cheap and easy-to-obtain raw materials, and the effect of reducing the internal resistance of the battery
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Embodiment 1
[0021] The positive active material is 0.5Li 2 MnO 3 0.5LiNi 0.33 co 0.33 mn 0.33 o 2 , the positive electrode conductive agent is a mixture of conductive carbon black, conductive graphite and carbon nanotubes, the positive electrode binder is polyvinylidene fluoride, and the mass percentages of each component are: positive electrode active material 90%, positive electrode conductive agent 6% (wherein conductive Carbon black 2%, conductive graphite 2%, carbon nanotube 2%), and positive electrode binder 4%.
[0022] The positive current collector is an aluminum foil coated with a first conductive coating and a second conductive coating on both sides, and the thickness of the aluminum foil before coating is 20 μm.
[0023] Wherein the first conductive coating is a mixture of graphene and polyvinylidene fluoride, the mass percentage of each component in the coating is: graphene 95%, polyvinylidene fluoride 5%, and the load on one side of the coating is 0.5g / m 2 , the maxi...
Embodiment 2
[0030] The positive active material is 0.3Li 2 MnO 3 0.7LiNi 0.33 co 0.33 mn 0.33 o 2 , the positive electrode conductive agent is a mixture of conductive carbon black, conductive graphite and carbon nanofibers, the positive electrode binder is polyvinylidene fluoride, and the mass percentages of each component are: positive electrode active material 93%, positive electrode conductive agent 3% (wherein conductive Carbon black 1%, conductive graphite 1%, carbon nanofiber 1%), and positive electrode binder 4%.
[0031] The positive current collector is an aluminum foil coated with a first conductive coating and a second conductive coating on both sides, and the thickness of the aluminum foil before coating is 15 μm.
[0032] Wherein the first conductive coating is a mixture of conductive carbon black and polyvinylidene fluoride, the mass percentage of each component in the coating is: conductive carbon black 90%, polyvinylidene fluoride 10%, and the loading on one side of t...
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