Lithium-rich positive electrode material co-doped by molybdenum and fluorine and coated by spinel in situ, and preparation method thereof
A technology of lithium-rich positive electrode materials and lithium-rich materials, applied in battery electrodes, structural parts, electrical components, etc., can solve the problems of low lithium ion diffusion rate and poor structural stability, and achieve a simple and easy-to-control preparation process with good consistency , Improve the effect of surface/interface physical and chemical properties
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Embodiment 1
[0046] Synergistic doping of Mo and F ions and in-situ coating modification of spinel applied to lithium-rich manganese-based ternary cathode material Li 1.2 mn 0.54 Ni 0.13 co 0.13 o 2 , prepared by the following steps:
[0047] (1) Prepare agar solution with a concentration of 30mg / mL, add lithium, nickel, cobalt and manganese nitrate, add ammonium heptamolybdate and lithium fluoride, wherein Mo 6+ and F - The moles are respectively 5.0% and 4.0% of the total moles of heavy metal ions. Add citric acid as a complexing agent to make a mixed solution, stir at 80 °C for 1 h, wait for it to cool to form a gel, prepare the precursor powder by freeze-drying, and sinter the precursor powder at 950 °C for 10 h to obtain Mo and F Lithium-rich cathode material modified by ion synergistic doping, the chemical formula is Li 1.168 mn 0.54 Ni 0.09 co 0.13 Mo 0.04 o 1.968 f 0.032 , as a nucleosome;
[0048] (2) preparation concentration is the tartaric acid solution of 5mg / mL;...
Embodiment 2
[0056] Example 2: Mo and F ion synergistic doping and spinel in-situ coating modification applied to lithium-rich manganese-based cathode material Li 1.2 mn 0.6 Ni 0.2 o 2
[0057] (1) prepare the agar solution that concentration is 20mg / mL, add the nitrate of lithium, nickel and manganese, add ammonium heptamolybdate and lithium fluoride, wherein, Mo 6+ and F - The moles are respectively 6.0% and 1.5% of the total moles of heavy metal ions. Add citric acid as a complexing agent to make a mixed solution, stir at 80 °C for 1 h, wait for it to cool to form a gel, prepare the precursor powder by freeze-drying, and sinter the precursor powder at 950 °C for 10 h to obtain Mo and F Lithium-rich cathode material modified by ion synergistic doping, the chemical formula is Li 1.188 mn 0.6 Ni 0.152 Mo 0.048 o 1.988 f 0.012 , as a nucleosome;
[0058] (2) preparation concentration is the tartaric acid solution of 3mg / mL;
[0059] (3) Take 1 g of nucleosome material powder an...
Embodiment 3
[0062] Example 3: Mo and F ion synergistic doping and spinel in-situ coating modification applied to lithium-rich manganese-based cathode material Li 1.2 mn 0.6 Ni 0.2 o 2
[0063] (1) prepare the agar solution that concentration is 50mg / mL, add the nitrate of lithium, nickel and manganese, add ammonium heptamolybdate and lithium fluoride, wherein, Mo 6+ and F - The moles are respectively 4.0% and 1.0% of the total moles of heavy metal ions. Add citric acid as a complexing agent to make a mixed solution, stir at 80 °C for 1 h, wait for it to cool to form a gel, prepare the precursor powder by freeze-drying, and sinter the precursor powder at 950 °C for 10 h to obtain Mo and F Lithium-rich cathode material modified by ion synergistic doping, the chemical formula is Li 1.19 mn 0.6 Ni 0.168 Mo 0.032 o 1.99 f 0.01 as nucleosomes;
[0064] (2) preparing a cysteine solution with a concentration of 1 mg / mL;
[0065] (3) Take 1 g of nucleosome material powder and add it...
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