Lithium ion capacitor battery integrating lithium ion capacitor and lithium battery, and preparation method thereof
A lithium-ion battery and capacitor battery technology, which is applied in the direction of capacitor collector combination, battery electrode, hybrid capacitor electrode, etc., to achieve the effect of large discharge power, thin size and long cycle period
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[0033] And described preparation method then comprises the steps:
[0034] S1. Form a lithium ion battery positive electrode material layer and a lithium ion capacitor positive electrode material layer on both sides of the positive electrode current collector, respectively, and form a lithium ion battery negative electrode material layer and a lithium ion capacitor negative electrode material layer on both sides of the negative electrode current collector. Floor;
[0035] S2. Drying and pressing the current collector.
[0036] Wherein when pressing, the positive electrode material layer of the lithium battery on the front of the positive electrode current collector, and the positive electrode material layer of the lithium ion capacitor on the reverse side; To suppress.
[0037] The preparation of the current collector part is completed through the above steps, and then the connection of the positive electrode current collector and the negative electrode current collector is ...
Embodiment 1
[0042] A schematic diagram of the preparation method is shown in this embodiment, which includes the following steps:
[0043] Step 1: using aluminum foil and copper foil as the positive electrode current collector and negative electrode current collector of the mixture.
[0044] Step 2: Prepare lithium battery positive electrode slurry and lithium ion capacitor positive electrode slurry, as well as lithium battery negative electrode slurry and lithium ion capacitor negative electrode slurry.
[0045] Step 3: Coating the lithium battery cathode slurry described in step 2 on the front side of the positive electrode collector, and then coating the lithium ion capacitor cathode slurry described in step 2 on the reverse side of the positive electrode collector.
[0046] Step 4: Apply the lithium battery negative electrode slurry described in step 2 on the front of the negative electrode collector, and then apply the lithium ion capacitor negative electrode slurry described in step...
Embodiment 2
[0063] Nickel-cobalt-manganese (NCM523) material, PVDF, and SP are formulated into a lithium battery positive electrode slurry in a mass ratio of 95.9:2:2.1, and then coated on the front of a 15um thick aluminum foil as a lithium battery positive electrode.
[0064] Nickel-cobalt-manganese (NCM523) material, activated carbon, PVDF, and SP were prepared in a mass ratio of 24.3:71.7:2:2 to make a lithium-ion capacitor positive electrode slurry, and coated on the reverse side of the aluminum foil as a lithium-ion capacitor positive electrode.
[0065] The silicon carbon plus graphite material, SBR, CMC and SP are formulated into a lithium battery negative electrode slurry in a mass ratio of 95.3:2:1.2:1.5, and coated on the front of a 10um thick copper foil as a lithium battery negative electrode.
[0066] As above, the silicon carbon plus graphite material, SBR, CMC and SP are prepared in the ratio of 95.3:2:1.2:1.5 to make the negative electrode slurry of the lithium ion battery...
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