High performance lithium ionic cell cathode material producing method
A technology for lithium ion batteries and negative electrode materials, which is applied in electrode manufacturing, battery electrodes, circuits, etc., can solve the problems of poor fluidity, low tap density, and difficulty in achieving expected results, and achieves improved comprehensive electrical performance and uniformity. Effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0015] Example 1 In a 2L container, add 0.2L xylene, slowly add 6.8g F01-1 novolak resin and 3.4g modified asphalt containing 50% solvent and 50% solid content successively under stirring, after the asphalt is basically completely dissolved , slowly add 0.13kg of spherical natural graphite under stirring, heat up to 120°C for 1 hour after adding graphite, keep stirring for 2 hours, evaporate the solvent under reduced pressure, and condense and recover the solvent with tap water. Under the protection of nitrogen, the spherical natural graphite coated with pitch and novolac resin was put into the carbonization furnace and raised to 700°C at a rate of 0.5°C / min, maintained for 2 hours, cooled to below 100°C and taken out. After pulverization, sieving and classification to particles with a particle size of less than 5 μm, the temperature is raised to 1100 °C at 0.8 °C / min under nitrogen protection, and the temperature is kept for 2 hours. The power is turned off, and the material i...
Embodiment 2
[0016] Example 2 In a 2L container, add 0.2L of xylene, slowly add 4.8g of F01-1 novolac resin and 0.55g of 213# resin without solvent and 3.4g of modified asphalt under stirring, after the asphalt is basically completely dissolved , slowly add 0.13kg of spherical natural graphite under stirring, heat up to 120°C for 1 hour after adding graphite, keep stirring for 2 hours, evaporate the solvent under reduced pressure, and condense and recover the solvent with tap water. Under the protection of nitrogen, the spherical natural graphite coated with pitch and novolac resin was put into the carbonization furnace and raised to 700°C at a rate of 0.5°C / min, maintained for 2 hours, cooled to below 100°C and taken out. After pulverization, sieving and classification to particles with a particle size of less than 5 μm, the temperature is raised to 1100 °C at 0.8 °C / min under nitrogen protection, and the temperature is kept for 2 hours. The power is turned off, and the material is taken o...
Embodiment 3
[0017] Example 3 In a 2L container, add 0.2L xylene, slowly add 8.2g furfural and 3.4g modified asphalt under stirring, after the asphalt is basically completely dissolved, add 0.82g p-toluenesulfonic acid, keep stirring, slowly Add 0.13 kg of spherical natural graphite. After adding graphite for 1 hour, raise the temperature to 120° C., keep stirring for 2 hours, evaporate the solvent under reduced pressure, and condense and recover the solvent with tap water. Under the protection of nitrogen, put the spherical natural graphite coated with pitch and furfural resin into the carbonization furnace to raise the temperature to 700°C at a rate of 0.5°C / min, and maintain it for 2 hours, then cool it to below 100°C and take it out. After pulverization, sieving and classification to particles with a particle size of less than 5 μm, the temperature is raised to 1100 °C at a rate of 0.8 °C / min under the protection of nitrogen, and the temperature is kept for 2 hours, and the power is tur...
PUM
| Property | Measurement | Unit |
|---|---|---|
| particle size | aaaaa | aaaaa |
| density | aaaaa | aaaaa |
| specific surface area | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
Login to View More