Secondary aluminum battery and preparation method thereof
A secondary aluminum battery and battery casing technology, which is applied in secondary batteries, electrolyte storage battery manufacturing, battery electrodes, etc., can solve the problems of hindered ion diffusion, battery specific capacity decrease, capacity attenuation, etc. In addition to the effect of temperature and cycle performance enhancement
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preparation example Construction
[0033] A method for preparing a secondary aluminum battery, comprising the steps of:
[0034] (1) Preparation of positive electrode active material slurry: the carbon acetylene polysulfide material prepared with a C:S mass ratio of 1:1-5 is used as the positive electrode active material, and the conductive agent super carbon black SUPER-P and the binder polyvinylidene fluoride are added PVDF, the ratio is 7:2:1, to make positive active material slurry,
[0035] (2) Coating the positive electrode active material slurry on the nickel foam substrate, drying and rolling to form a positive electrode sheet. Wind the positive electrode sheet, glass fiber non-woven separator, and the negative electrode made of aluminum powder, aluminum foil, or aluminum alloy as the negative electrode active material into an electric core, put it into a nickel-plated steel shell, add an organic electrolyte, and seal it. AA type cylindrical secondary aluminum battery.
[0036] A method for preparing ...
Embodiment 1
[0050] The carbonyne polysulfide material prepared with a C:S mass ratio of 1:1 was used as the positive electrode, and the rest of the preparation steps of the positive electrode were the same as in Comparative Example 1.
[0051] The method for preparing the negative electrode is the same as that of Comparative Example 1, and the assembly of the battery is the same as that of Comparative Example 1. During the battery charge-discharge cycle test, charge to 2.4V at 1C, discharge to 1.2V at 0.5C, and the charge-discharge data are listed in Table 1.
Embodiment 2
[0053] The carbon acetylene polysulfide material prepared with a mass ratio of C:S of 1:2 was used as the positive electrode, and the rest of the preparation steps of the battery were the same as in Comparative Example 1. During the battery charge-discharge cycle test, charge to 2.4V at 1C, discharge to 1.2V at 0.5C, and the charge-discharge data are listed in Table 1.
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