Additive and method for producing 6 micron high-hardness electrolytic copper foil by using additive
A technology of electrolytic copper foil and additives, applied in electrolysis process, electroforming, etc., can solve the problems affecting the safety and life of lithium batteries, low hardness of copper foil, uneven quality and weight, etc., to achieve increased technical added value, low cost, and high hardness Improved effect
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Embodiment 1
[0015] An additive, the additive includes a hardness agent and a brightener, the hardness agent is an aqueous solution A containing 1,3-tetrahydrothiazol-2-one, DPS and MESS, wherein, in the aqueous solution A, 1,3-tetrahydro The concentration of thiazol-2-one is 1ppm, the concentration of DPS is 15ppm, and the concentration of MESS is 2ppm; the brightener contains SPS and Cl - Aqueous solution B, wherein, in aqueous solution B, SPS concentration is 10ppm, Cl - The concentration is 20ppm.
[0016] A method for producing 6 µm high-hardness electrolytic copper foil using the above-mentioned additives, which specifically includes the following steps:
[0017] (1) Solution preparation: Heat and dissolve high-purity copper wire with a purity of 99.95% in a copper-dissolving tank (add sulfuric acid and hot water to the copper-dissolving tank and blow in air) to generate copper sulfate electrolyte;
[0018] (2) Preparation of electrolytic copper foil: After the copper sulfate elect...
Embodiment 2
[0022] An additive, the additive includes a hardness agent and a brightener, the hardness agent is an aqueous solution A containing 1,3-tetrahydrothiazol-2-one, DPS and MESS, wherein, in the aqueous solution A, 1,3-tetrahydro The concentration of thiazol-2-one is 3ppm, the concentration of DPS is 20ppm, and the concentration of MESS is 4ppm; the brightener contains SPS and Cl - Aqueous solution B, wherein, in aqueous solution B, SPS concentration is 15ppm, Cl - The concentration is 20ppm.
[0023] A method for producing 6 µm high-hardness electrolytic copper foil using the above-mentioned additives, which specifically includes the following steps:
[0024] (1) Solution preparation: Heat and dissolve high-purity copper wire with a purity of 99.95% in a copper-dissolving tank (add sulfuric acid and hot water to the copper-dissolving tank and blow in air) to generate copper sulfate electrolyte;
[0025] (2) Preparation of electrolytic copper foil: After the copper sulfate elect...
Embodiment 3
[0029] An additive, the additive includes a hardness agent and a brightener, the hardness agent is an aqueous solution A containing 1,3-tetrahydrothiazol-2-one, DPS and MESS, wherein, in the aqueous solution A, 1,3-tetrahydro The concentration of thiazol-2-one is 8ppm, the concentration of DPS is 40ppm, and the concentration of MESS is 10ppm; the brightener contains SPS and Cl - Aqueous solution B, wherein, in aqueous solution B, SPS concentration is 30ppm, Cl - The concentration is 10ppm.
[0030] A method for producing 6 µm high-hardness electrolytic copper foil using the above-mentioned additives, which specifically includes the following steps:
[0031] (1) Solution preparation: Heat and dissolve high-purity copper wire with a purity of 99.95% in a copper-dissolving tank (add sulfuric acid and hot water to the copper-dissolving tank and blow in air) to generate copper sulfate electrolyte;
[0032] (2) Preparation of electrolytic copper foil: After the copper sulfate elec...
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