Preparation method of carbon nanotube and lithium iron phosphate composite positive electrode material
A composite positive electrode material, lithium iron phosphate technology, applied in battery electrodes, electrical components, electrochemical generators, etc., can solve the problems of performance degradation, low electron and ion conductivity of lithium iron phosphate, and improve ion conductivity Low efficiency, simple process, uniform product compound effect
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Embodiment 1
[0021] Weigh nickel carbonate, talcum powder and lithium iron phosphate powder according to the mass ratio of 1:10:100, add them into absolute ethanol, and grind for 30 minutes. Dry at 80°C to prepare a catalyst-loaded lithium iron phosphate carrier.
[0022] Spread the lithium iron phosphate carrier on the alumina substrate, the substrate is placed on the quartz boat, and the quartz boat is placed at the head end of the quartz tube of the tube furnace. Ar gas was passed through at a rate of 150 sccm for half an hour to remove the air in the tube.
[0023] Heat the tube furnace to 750°C, push the quartz boat to the center of the furnace, and after 5 minutes, adjust the Ar gas flow to 300 sccm, and inject cyclohexane at 15ml / h for 40 minutes. Stop the heating, cool down to normal temperature with the furnace under the protection of argon, take out the sample in the tube furnace, which is the LiFePO4 / CNT composite material.
Embodiment 2
[0025] Weigh ferrocene, talc powder and lithium iron phosphate powder according to 1:10:100, add to absolute ethanol, grind and stir for 30min. Dry at 60°C to prepare a catalyst-loaded lithium iron phosphate carrier.
[0026] Spread the lithium iron phosphate carrier on the alumina substrate, the substrate is placed on the quartz boat, and the quartz boat is placed at the head end of the quartz tube of the tube furnace. Ar gas was passed through at a rate of 500 sccm for half an hour to remove the air in the tube.
[0027] Heat the tube furnace to 850°C, push the quartz boat to the center of the furnace, and after 5 minutes, adjust the Ar gas flow to 300 sccm, and inject ethanol at 15ml / h for 30 minutes. Stop the heating, cool to normal temperature with the furnace under the protection of argon, take out the sample in the tube furnace, which is the LiFePO4 / CNT composite material.
Embodiment 3
[0029] Weigh ferric nitrate, nickel hydroxide, talcum powder and lithium iron phosphate powder according to 1:10:100, add to distilled water, grind and stir for 30 minutes. Dry at 60°C to prepare a catalyst-loaded lithium iron phosphate carrier.
[0030] Spread the lithium iron phosphate carrier on the alumina substrate, the substrate is placed on the quartz boat, and the quartz boat is placed at the head end of the quartz tube of the tube furnace. Ar gas was passed through at a rate of 500 sccm for half an hour to remove the air in the tube.
[0031] Heat the tube furnace to 750°C, push the quartz boat to the center of the furnace, and after 5 minutes, adjust the Ar gas flow to 300 sccm, and inject ethanol at 15ml / h for 40 minutes. After the heating is stopped, the furnace is cooled to normal temperature under the protection of argon, and the sample in the tube furnace is taken out, which is the LiFePO4 / CNT composite material.
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