Method for preparing nickel-doped vanadium pentoxide nanometer sheet-like positive electrode material of lithium ion battery
A vanadium pentoxide nanometer, lithium ion battery technology, applied in battery electrodes, nanotechnology for materials and surface science, batteries, etc., can solve the problems of long sample preparation period and poor cycle stability, and improve the application value. , good rate performance, low production cost
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Embodiment 1
[0031] First accurately weigh 0.364g V 2 o 5 Powder, while magnetic stirring, it is slowly added in the beaker that fills 65mL distilled water, fully stirs, then slowly add 6mL mass fraction with the dropper and be the hydrogen peroxide solution (H 2 o 2 ), after a period of continuous stirring, the yellow suspension in the beaker gradually turned into a brown transparent solution, and V 2 o 5 Sol; then accurately weigh 0.254g of nickel acetate tetrahydrate with a purity of 98wt%, dissolve it in 30mL of distilled water, keep stirring with a glass rod and then set the volume to 100mL to obtain a nickel acetate solution with a concentration of 0.01mol / L ; Accurately measure 4 mL of nickel acetate solution with a concentration of 0.01 mol / L, and slowly add it dropwise to the above-mentioned V 2 o 5 Stirring was continued in the sol for 30 minutes, at this time n(V 2 o 5 ):n(Ni)=1:0.02, promptly obtain the nickel-doped vanadium pentoxide sol that doping amount is 2%;
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Embodiment 2
[0035] First accurately weigh 0.364g V 2 o 5 Powder, while magnetic stirring, it is slowly added in the beaker that fills 60mL distilled water, fully stirs, then slowly add 5mL mass fraction with the dropper and be the hydrogen peroxide solution (H 2 o 2 ), after a period of continuous stirring, the yellow suspension in the beaker gradually turned into a brown transparent solution, and V 2 o 5 Sol; then accurately weigh 0.254g of nickel acetate tetrahydrate with a purity of 98wt%, dissolve it in 30mL of distilled water, keep stirring with a glass rod and then set the volume to 100mL to obtain a nickel acetate solution with a concentration of 0.01mol / L ; Accurately measure 8mL concentration of nickel acetate solution that is 0.01mol / L, and slowly add it dropwise to the above-mentioned V 2 o 5 Stirring was continued in the sol for 30 minutes, at this time n(V 2 o 5 ):n(Ni)=1:0.04, promptly obtaining the nickel-doped vanadium pentoxide sol that doping amount is 4%;
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Embodiment 3
[0044] First accurately weigh 0.546g V 2 o 5 Powder, while magnetic stirring, it is slowly added in the beaker that fills 100mL distilled water, fully stirs, then slowly add 8mL mass fraction with the dropper and be the hydrogen peroxide solution (H 2 o 2 ), after a period of continuous stirring, the yellow suspension in the beaker gradually turned into a brown transparent solution, and V 2 o 5 Sol; then accurately weigh 0.254g of nickel acetate tetrahydrate with a purity of 98wt%, dissolve it in 30mL of distilled water, keep stirring with a glass rod and then set the volume to 100mL to obtain a nickel acetate solution with a concentration of 0.01mol / L ; Accurately measure 18mL concentration of nickel acetate solution that is 0.01mol / L, and slowly add it dropwise to the above-mentioned V 2 o 5 Stirring was continued in the sol for 30 minutes, at this time n(V 2 o 5 ):n(Ni)=1:0.06, promptly obtaining the nickel-doped vanadium pentoxide sol that doping amount is 6%;
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