Lithium ion battery anode material manganese lithium iron phosphate and preparation method thereof
A technology of lithium iron manganese phosphate and lithium-ion batteries, applied in the field of materials, can solve problems such as poor electronic conductivity and instability, achieve high discharge voltage platform, reduce battery cost, and have good safety effects
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Embodiment 1
[0022] Weigh a certain amount of lithium carbonate and iron phosphate at a molar ratio of 1.0 to 1.2:1:1, then add glucose with a mass fraction of 13%, mix well, heat treat at 350°C for 2 hours in a nitrogen atmosphere, and cool in the furnace. Take half of the above-prepared mixture, add manganese acetate in the ratio of iron to manganese molar ratio of 1:1, and simultaneously weigh lithium carbonate and ammonium dihydrogen phosphate according to the molar ratio of manganese, lithium, and phosphorus sources in the range of 1:1.0 to 1.2:1, and then Then add 3% glucose and mix well. The uniformly mixed lithium iron manganese phosphate precursor is put into a compound furnace, and after 5 minutes of compound treatment, it is left to be calcined. Control the heating rate at 10°C / min, and calcine the compounded precursor powder at 650°C for 12 hours under the protection of nitrogen atmosphere, and cool to room temperature with the furnace to obtain carbon-coated LiFe 0.5 mn 0.5 ...
Embodiment 2
[0025] Weigh a certain amount of lithium carbonate, iron nitrate, and ammonium dihydrogen phosphate according to a molar ratio of 1.0~1.2:1:1, then add glucose with a mass fraction of 13%, mix well, heat treat at 350°C for 2 hours in a nitrogen atmosphere, and cool in the furnace deal with. Take half of the above-prepared mixture, add manganese acetate in the ratio of iron to manganese molar ratio of 1:1, and simultaneously weigh lithium carbonate and ammonium dihydrogen phosphate according to the molar ratio of manganese, lithium, and phosphorus sources in the range of 1:1.0 to 1.2:1, and then Then add 3% glucose and mix well. The uniformly mixed lithium iron manganese phosphate precursor is put into a compound furnace, and after 5 minutes of compound treatment, it is left to be calcined. Control the heating rate at 10°C / min, calcinate the compounded precursor powder at 650°C for 12h under the protection of nitrogen atmosphere, and cool to room temperature with the furnace t...
Embodiment 3
[0027] Weigh a certain amount of lithium carbonate, iron oxide, and diammonium hydrogen phosphate at a molar ratio of 1.0 to 1.2:1:1, then add glucose with a mass fraction of 13%, mix well, heat treat at 350°C for 2 hours in a nitrogen atmosphere, and cool in the furnace deal with. Take half of the mixture prepared above, add manganese acetate in the ratio of iron to manganese molar ratio of 1:1, and simultaneously weigh lithium carbonate and ammonium dihydrogen phosphate according to the molar ratio of manganese, lithium and phosphorus sources of 1:1.0 to 1.2:1, and then Then add 3% glucose and mix well. The uniformly mixed lithium iron manganese phosphate precursor is put into a compound furnace, and after 5 minutes of compound treatment, it is left to be calcined. Control the heating rate at 10°C / min, calcinate the compounded precursor powder at 650°C for 12h under the protection of nitrogen atmosphere, and cool to room temperature with the furnace to obtain carbon-coated ...
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