Ceramic-coated diaphragm for lithium-ion battery and preparation method of ceramic-coated diaphragm
A lithium-ion battery and ceramic coating technology, applied in battery pack parts, circuits, electrical components, etc., can solve the problems of insufficient and uniform coverage of the diaphragm surface, large particles, and low gravure coating accuracy, and achieve thermal stability and Strong electrochemical stability, reducing potential difference, ensuring fast conduction effect
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Embodiment 1
[0019] Step (1): Prepare a mixed solution of alumina ceramic powder, sodium hydroxide, and deionized water at a ratio of 1:1:16 and stir evenly. The uniformly stirred solution was charged into a hydrothermal reaction kettle, and reacted at 130° C. for 30 minutes. After the reaction is finished and cooled, the solution is filtered and washed with deionized water to obtain the treated ceramic powder, which is dried at 90°C for use.
[0020] Step (2): Mix alumina ceramic powder, polyvinylidene fluoride binder and N'N dimethylpyrrolidone solvent in proportion (mass ratio of ceramic to binder is 3:1, mass ratio of solid to solvent is 1:4 ), placed under normal temperature and mechanically stirred for 6 to 10 hours to obtain a uniform ceramic coating mixture;
[0021] Step (3): Draw a certain amount of ceramic coating mixture with a syringe, put it into an electrostatic spray device, clamp the needle of the syringe with an external power supply, and then flatten and fix the lithium...
Embodiment 2
[0023] Step (1): Prepare a mixed solution of alumina ceramic powder, sodium hydroxide, and deionized water at a ratio of 1:1:16 and stir evenly. The uniformly stirred solution was charged into a hydrothermal reaction kettle, and reacted at 130° C. for 30 minutes. After the reaction is finished and cooled, the solution is filtered and washed with deionized water to obtain the treated ceramic powder, which is dried at 90°C for use.
[0024] Step (2): Mix alumina ceramic powder, polyvinylidene fluoride binder and N'N dimethylpyrrolidone solvent in proportion (mass ratio of ceramic to binder is 4:1, mass ratio of solid to solvent is 1:4 ), placed under normal temperature and mechanically stirred for 6 to 10 hours to obtain a uniform ceramic coating mixture;
[0025] Step (3): Draw a certain amount of ceramic coating mixture with a syringe, put it into an electrostatic spray device, clamp the needle of the syringe with an external power supply, and then flatten and fix the lithium...
Embodiment 3
[0027] Step (1): Prepare a mixed solution of alumina ceramic powder, sodium hydroxide, and deionized water at a ratio of 1:1:16 and stir evenly. The uniformly stirred solution was charged into a hydrothermal reaction kettle, and reacted at 130° C. for 30 minutes. After the reaction is finished and cooled, the solution is filtered and washed with deionized water to obtain the treated ceramic powder, which is dried at 90°C for use.
[0028] Step (2): Mix alumina ceramic powder, polyvinylidene fluoride binder and N'N dimethylpyrrolidone solvent in proportion (mass ratio of ceramic to binder is 5:1, mass ratio of solid to solvent is 1:4 ), placed under normal temperature and mechanically stirred for 6 to 10 hours to obtain a uniform ceramic coating mixture;
[0029] Step (3): Draw a certain amount of ceramic coating mixture with a syringe, put it into an electrostatic spray device, clamp the needle of the syringe with an external power supply, and then flatten and fix the lithium...
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