Chromium oxide/carbon fluoride/high-conductivity substance composite material for lithium primary battery
A chromium oxide, high conductivity technology, applied in the direction of battery electrodes, active material electrodes, non-aqueous electrolyte batteries, etc., can solve the problems of chromium oxide sensitivity, uneven coating of composite materials, limited improvement of material conductivity, etc. , to achieve the effect of improving conductivity, improving discharge specific capacity and rate performance
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Embodiment 1
[0039] A kind of Cr for primary lithium battery 8 o 21 The preparation method of / carbon fluoride / graphene composite material, comprises the steps:
[0040] ①Preparation of doping materials: After mixing fluorinated carbon, graphene and water, ultrasonically disperse for 30 minutes, and then dry until the water is completely removed, and a uniformly mixed doping material is obtained;
[0041] ② According to CrO 3 : carbon fluoride: graphene=80:15:5 mass ratio, ball milling chromium trioxide and dopant material for 6 hours under the condition of rotating speed 300r / min, so that the material is evenly dispersed;
[0042] ③ Place the product obtained in step ② in a tube furnace, sinter it with oxygen at 270°C for 48 hours, take it out and grind it into powder, pass through a 200-mesh sieve to obtain Cr 8 o 21 / fluorocarbon / graphene composite material; the oxygen flow rate is 25ml / min;
[0043] ④ Mix the composite material, SuperP, CNTS, and PVDF (solution with a mass fraction...
Embodiment 2
[0046] A kind of Cr for primary lithium battery 8 o 21 The preparation method of / carbon fluoride / graphene composite material, comprises the steps:
[0047] ①Preparation of doping materials: After mixing fluorinated carbon, graphene and water, ultrasonically disperse for 30 minutes, and then dry until the water is completely removed, and a uniformly mixed doping material is obtained;
[0048] ② According to CrO 3 : carbon fluoride: graphene=85:10:5 mass ratio, ball milling chromium trioxide and dopant material for 6h under the condition of rotating speed 300r / min, so that the material is evenly dispersed;
[0049] ③ Place the product obtained in step ② in a tube furnace, sinter it with oxygen at 270°C for 48 hours, take it out and grind it into powder, pass through a 200-mesh sieve to obtain Cr 8 o 21 / fluorocarbon / graphene composite material; the oxygen flow rate is 25ml / min.
Embodiment 3
[0051] A kind of Cr for primary lithium battery 8 o 21 The preparation method of / carbon fluoride / graphene composite material, comprises the steps:
[0052] ①Preparation of doping materials: After mixing fluorinated carbon, graphene and water, ultrasonically disperse for 30 minutes, and then dry until the water is completely removed, and a uniformly mixed doping material is obtained;
[0053] ② According to CrO 3 : carbon fluoride: graphene=75:20:5 mass ratio, ball milling chromium trioxide and dopant material for 6 hours under the condition of rotating speed 300r / min, so that the material is evenly dispersed;
[0054] ③ Place the product obtained in step ② in a tube furnace, sinter it with oxygen at 270°C for 48 hours, take it out and grind it into powder, pass through a 200-mesh sieve to obtain Cr 8 o 21 / fluorocarbon / graphene composite material; the oxygen flow rate is 25ml / min.
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