A kind of hard carbon negative electrode material for high-performance lithium-ion power battery, its preparation method and application
A negative electrode material and power battery technology, applied in the field of electrochemistry, can solve the problem of inability to meet the continuous high current discharge capacity and other problems, and achieve the effects of good electrochemical performance, broad research prospects, and mild and controllable conditions.
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Embodiment 1
[0030] Weigh 30g of phenolic resin and stir to dissolve in 60 mL of absolute ethanol, filter out impurities, add 40 g of phosphoric acid to the filtrate while stirring; dry in an oven at 50°C. The dried sample was put into a tube furnace, and carbonized at 800 °C for 8 h at a heating rate of 2 °C / min under an argon atmosphere. The carbonized sample was milled in a ball mill at 300 r / min for 8 h, and then passed 300 mesh sieve to obtain the hard carbon negative electrode material.
Embodiment 2
[0032] Weigh 30g of phenolic resin and stir to dissolve in 60 mL of absolute ethanol, filter out impurities, add 55 g of phosphoric acid to the filtrate under stirring conditions; dry in an oven at 80°C. The dried sample was put into a tube furnace, and carbonized at 1000°C for 5h at a heating rate of 5°C / min under an argon atmosphere. The carbonized sample was milled in a ball mill at 400r / min for 6h, and then passed 400 mesh sieve to obtain the hard carbon negative electrode material.
Embodiment 3
[0034] Weigh 30 g of phenolic resin and dissolve it in 60 mL of absolute ethanol, filter out impurities, add 45 g of phosphoric acid to the filtrate while stirring; dry in an oven at 80°C. The dried sample was put into a tube furnace, and carbonized at 1200 °C for 5 h at a heating rate of 8 °C / min under an argon atmosphere. The carbonized sample was ball milled in a ball mill at 800 r / min for 5 h, and then passed 600 mesh sieve to obtain the hard carbon negative electrode material.
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