Lithium ion battery and negative electrode composite electrode plate thereof
A lithium-ion battery and pole piece technology, which is applied to battery electrodes, secondary batteries, and secondary battery repair/maintenance, etc., can solve problems such as poor cycle performance and high expansion rate, and achieve improved conductivity, reduced expansion rate, and improved Effects of cycle performance and liquid absorption capacity
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Embodiment 1
[0018] A kind of preparation method of lithium-ion battery negative pole composite electrode, has the following steps:
[0019] 1. Preparation of solution A: Add 0.3g of silicon powder with a particle size of 50nm to 5mL of dimethylformamide (DMF), and then add 0.3g of polyoxyethylene-polyoxypropylene-polyoxyethylene substance ( Abbreviated as P123) ultrasonic dispersion to form a uniform suspension, then add 0.8g of tetrabutyl titanate (C 16 h 36 0 4 Ti, TBOT), 0.3g of deionized water and 0.3g of triethanolamine (C 6 h 15 NO 3 ), magnetically stirred to form a homogeneous mixed solution, then slowly hydrolyzed at room temperature for 12h, and finally added 0.3g of polymethylmethacrylate (PMMA) and 0.1ml of hydrogen peroxide with a concentration of 10% and magnetically stirred for 1h A homogeneous viscous suspension A is obtained.
[0020] 2. Preparation of pole piece B: Coat the suspension on a 10-micron copper foil, and dry it at 60°C for 8 hours to obtain a Si / TBOT / PM...
Embodiment 2
[0023] 1. Preparation of solution A: Evenly disperse 0.1g of silicon powder with a particle size of 30nm in 5mL of dimethylformamide (DMF), and then add 0.1g of polyoxyethylene-polyoxypropylene-polyoxyethylene substance (referred to as P123) ultrasonic dispersion to form a uniform suspension, then add 0.7g of tetrabutyl titanate (C 16 h 36 0 4 Ti, TBOT), 0.2g of deionized water and 0.25g of triethanolamine (C 6 h 15 NO 3 ), magnetically stirred to form a uniform mixed solution, then slowly hydrolyzed at room temperature for 12h, and finally added 0.2g of polymethylmethacrylate (PMMA) and 0.1ml of hydrogen peroxide with a concentration of 30% and magnetically stirred for 1h A homogeneous viscous suspension A is obtained.
[0024] 2. Preparation of pole piece B: Coat the suspension on the copper foil and dry it at 60°C for 8 hours to obtain the Si / TBOT / PMMA pole piece. Soak in lithium carbonate solution for 1 hour and dry to obtain pole piece B.
[0025] 3. Preparation of...
Embodiment 3
[0027] 1. Preparation of solution A: Evenly disperse 0.5g of silicon powder with a particle size of 100nm in 5mL of dimethylformamide (DMF), and then add 0.5g of polyoxyethylene-polyoxypropylene-polyoxyethylene substance (referred to as P123) ultrasonic dispersion to form a uniform suspension, then add 0.9g of tetrabutyl titanate (C 16 h 36 0 4 Ti, TBOT), 0.3g of deionized water and 0.35g of triethanolamine (C 6 h 15 NO 3 ), magnetically stirred to form a homogeneous mixed solution, then slowly hydrolyzed at room temperature for 12h, and finally added 0.4g of polymethylmethacrylate (PMMA) and 0.1ml of hydrogen peroxide with a concentration of 0.5% and magnetically stirred for 1h A homogeneous viscous suspension A is obtained.
[0028] 2. Preparation of pole piece B: Coat the suspension on the copper foil and dry it at 60°C for 8 hours to obtain the Si / TBOT / PMMA pole piece. Lithium carbonate solution was soaked for 5 hours, and pole piece B was obtained after drying.
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