Lithium ion battery lithium-enriching technology and lithium ion battery prepared by the technology
A lithium-ion battery, lithium-rich technology, applied in battery electrodes, electrolyte battery manufacturing, electrode manufacturing and other directions, can solve battery safety hazards, lithium powder floating, increase battery thickness and other problems, improve battery safety performance, avoid oxidation and Floating to the effect of simple preparation method
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Embodiment 1
[0041] First, at room temperature, that is, 25 ℃, the lithium powder (with Li 2 CO 3 Coating layer, particle size D50 is 3μm) and EC powder (particle size D50 is 30μm) is added into the mixing tank according to the mass ratio of 20:20, and then the powder is mixed with a plastic stirring slurry at a speed of 30 r / min. The bulk mixture was stirred for 30 min. By sampling the powder mixture multiple times using statistical methods, and then inspecting it with visual inspection (based on different powders with different colors) and high-power optical microscopy (based on different powders with different morphologies) detection methods to ensure that the mixed powders are uniformly dispersed Then, heat the uniformly mixed powder to 45 °C to melt the EC powder into an EC solution: Since the mixture of the above powders has been uniformly mixed in a dry-mixed state, the lithium powder after EC solvation has been in a uniformly dispersed form Exists in EC solvent. Through particle...
Embodiment 2
[0053] First, at room temperature, that is, 25 ℃, the lithium powder (with Li 2 CO 3 Coating layer, particle size D50 is 10 μm), SiO 2 Ceramic powder (particle size D50 is 0.2 μm), PAANa powder, EC powder (particle size D50 is 100 μm) were added to the mixing tank in a mass ratio of 9:4:4:22, and then a plastic stirring slurry was used at 30 The powder mixture was stirred at rpm for 45 min. By sampling the powder mixture multiple times using statistical methods, and then inspecting it with visual inspection (based on different powders with different colors) and high-power optical microscopy (based on different powders with different morphologies) detection methods to ensure that the mixed powders are uniformly dispersed Then, the mixed powder was heated to 45 °C to melt the EC powder into an EC solution. At the same time, the PAANa powder was dissolved into the EC solution to form an EC solvent with a certain viscosity: since the mixture of the above powders has been mixed i...
Embodiment 3
[0058] First, at room temperature, that is, 25 ℃, the lithium powder (same as Example 2), Al 2 O 3Ceramic powder (particle size D50 is 0.5μm), PVDF powder, Super P conductive powder, EC powder (particle size D50 is 60μm) are added to the mixing tank in a mass ratio of 9:7:3:1:20, Then, the powder mixture was stirred for 30 min with a plastic stirring paddle at 30 rpm. By sampling the powder mixture multiple times using statistical methods, and then inspecting it with visual inspection (based on different powders with different colors) and high-power optical microscopy (based on different powders with different morphologies) detection methods to ensure that the mixed powders are uniformly dispersed Then, the mixed powder was heated to 45 °C to melt the EC powder into an EC solution, and at the same time, the PVDF powder was dissolved into the EC solution to form an EC solvent with a certain viscosity: since the mixture of the above powders has been mixed in a dry mixing state ...
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