Battery
A battery and electrolyte technology, which is applied in secondary batteries, circuits, secondary battery repair/maintenance, etc., can solve problems such as limiting batteries and battery electrochemical performance deterioration, to improve corrosion problems, improve self-discharge problems, and suppress The effect of oxygen free radicals
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[0079] In a preferred embodiment, the separator is a separator that separates the electrolyte into positive electrolyte and negative electrolyte. That is, the first metal ion is confined in the positive electrolyte, and the second metal ion is confined in the negative electrolyte, so that the diaphragm can prevent the mutual contamination of the positive and negative electrolytes, and the electrolyte that is more suitable for the positive or negative can be selected, but it does not affect Ionic charge transfer. For example, using an anion exchange membrane or a hydrogen ion exchange membrane as a diaphragm, the first metal ion in the positive electrolyte cannot pass through the diaphragm, so it cannot enter the negative electrolyte and can only be limited to the positive electrolyte; the second metal ion in the negative electrolyte Metal ions cannot pass through the diaphragm, so they cannot enter the positive electrolyte, and can only be confined in the negative electrolyte....
Embodiment 1
[0083] Mix lithium manganate LMO, conductive agent graphite, binder SBR and CMC in water according to the mass ratio of 90:5:2.5:2.5, add lithium manganate LMO, conductive agent graphite, binder SBR and CMC total mass 5% of BHT, mixed to form a homogeneous cathode slurry. The positive electrode slurry was coated on both sides of the positive electrode current collector (50 μm stainless steel wire mesh) coated with a conductive film to form an active material layer, which was then pressed into sheets and cut into a size of 8×10 cm to make a positive electrode. The thickness of the positive electrode sheet is 0.4mm, and the surface density of the positive electrode active material is 750g / m 2 .
[0084] A zinc foil with a thickness of 50 μm was used as the negative electrode. The diaphragm is an AGM glass fiber diaphragm. The separator and negative electrode are comparable in size to the positive electrode.
[0085] Weigh a certain mass of zinc sulfate and lithium sulfate, a...
Embodiment 2
[0088] Lithium manganese oxide LMO, conductive agent graphite, binder SBR and CMC are mixed in water according to the mass ratio of 90:5:2.5:2.5 to form a uniform positive electrode slurry. The positive electrode slurry was coated on both sides of the positive electrode current collector (50 μm stainless steel wire mesh) coated with a conductive film to form an active material layer, which was then pressed into sheets and cut into a size of 8×10 cm to make a positive electrode. The thickness of the positive electrode sheet is 0.4mm, and the surface density of the positive electrode active material is 750g / m 2 .
[0089] A zinc foil with a thickness of 50 μm was used as the negative electrode. The diaphragm is an AGM glass fiber diaphragm. The separator and negative electrode are comparable in size to the positive electrode.
[0090] Weigh a certain amount of zinc methanesulfonate and lithium methanesulfonate, dissolve them in water, and then add BHT to configure zinc methan...
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