Preparation method of nano-carbon/lithium titanate composite coated positive electrode material with three-dimensional porous structure
A positive electrode material, three-dimensional porous technology, applied in the field of lithium ion battery materials, can solve the problems of unsolved lithium titanate electronic conductivity, material electrochemical properties decay, battery high temperature flatulence, etc., to achieve inhibition of irreversible capacity loss, high carbon package The effect of coverage rate and high safety
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Embodiment 1
[0039] Step 1, with nickel sulfate, cobalt sulfate, manganese sulfate according to molar ratio 0.6: 0.2: 0.2, make positive electrode material: LiNi 0.6 co 0.2 mn 0.2 O;
[0040] Step 2, the relative molecular mass of 1.6g is 2×10 6 Xanthan gum and 50 mL deionized water were mixed uniformly under the stirring condition of 300r / min to obtain 32 mg / mL xanthan gum solution A; 5mL tetrabutyl titanate was mixed with 2mL absolute ethanol and heated at 100r Mix evenly under the stirring condition of / min, obtain the two mixture B;
[0041] Step 3. Under the condition of strong magnetic stirring at 300r / min, add solution B dropwise to solution A at a rate of 2 drops per second to obtain xanthan gum composite titanium dioxide with a mass ratio of xanthan gum to titanium dioxide of 8:2 Mixed solution, and keep stirring for 2h;
[0042] Step 4. Under the condition of strong magnetic stirring at 300 r / min, slowly add 10 g of the positive electrode material in step 1 into the xanthan ...
Embodiment 2
[0049] Step 1, with nickel sulfate, cobalt sulfate, manganese sulfate according to molar ratio 0.5: 0.2: 0.3, make positive electrode material: LiNi 0.5 co 0.2 mn 0.3 O;
[0050] Step 2, the relative molecular mass of 8g is 5×10 6 Xanthan gum and 50 mL deionized water were mixed evenly under the stirring condition of 300r / min to obtain 160 mg / mL xanthan gum solution A; 6mL tetraethyl titanate was mixed with 3mL absolute ethanol and heated at 100r Mix evenly under the stirring condition of / min, obtain the two mixture B;
[0051] Step 3. Under the condition of strong magnetic stirring at 300r / min, add solution B dropwise to solution A at a rate of 2 drops per second to obtain xanthan gum composite titanium dioxide with a mass ratio of xanthan gum to titanium dioxide of 8.5:2.5 Mixed solution, and keep stirring for 3h;
[0052] Step 4. Under the condition of strong magnetic stirring at 300r / min, slowly add 12g of the positive electrode material in step 1 into the mixed solu...
Embodiment 3
[0056] Step 1, nickel sulfate, cobalt sulfate, manganese sulfate according to molar ratio 0.75: 0.05: 0.20, make positive electrode material: LiNi 0.75 co 0.05 mn 0.2 O;
[0057] Step 2, the relative molecular mass of 2.4g is 3×10 6 Xanthan gum and 50 mL deionized water were mixed uniformly under the stirring condition of 300r / min to obtain 48 mg / mL xanthan gum solution A; 7mL tetrabutyl titanate was mixed with 3mL absolute ethanol and heated at 100r Mix evenly under the stirring condition of / min, obtain the two mixture B;
[0058] Step 3. Under the condition of strong magnetic stirring at 300r / min, add solution B dropwise to solution A at a rate of 2 drops per second to obtain xanthan gum composite titanium dioxide with a mass ratio of xanthan gum to titanium dioxide of 8:2.2 Mixed solution, and keep stirring for 2.5h;
[0059] Step 4. Under the condition of strong magnetic stirring at 300r / min, slowly add 15g of the positive electrode material in step 1 into the xantha...
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