Preparation method of strontium and barium activated lithium iron phosphate positive pole material
A technology of lithium iron phosphate and positive electrode materials, which is applied in battery electrodes, electrical components, circuits, etc., can solve problems such as low tap density and poor conductivity, and achieve the goal of increasing electrical conductivity, increasing electronic conductivity, and reducing unit cell volume Effect
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Embodiment 1
[0024] Li2CO3 (99.73%, SrCO (99.8%), BaCO3 (99.8%), FeC2O4.2H2O (99.06%), NH4H2PO4 (98%) raw materials, mixed according to the ratio of 1mol Li: 0.00002mol Sr: 0.0003mol Ba: 1mol Fe: 1molP Finally, in absolute ethanol (AR) medium, high-speed ball milling for 20h (rotation speed 200r / mimn. After drying at 105-120°C, the precursor was obtained, and the dried precursor was placed in a high-temperature furnace. (>99.5%) atmosphere, calcining at a high temperature of 500-750° C. for 24 hours to obtain the strontium and barium activated lithium iron phosphate cathode material of the present invention.
Embodiment 2
[0026] Li2CO3 (99.73%, SrCO (99.8%), BaCO3 (99.8%), FeC2O4.2H2O (99.06%), NH4H2PO4 (98%) raw materials, according to the ratio of 1mol Li: 0.00004mol Sr: 0.001mol Ba: 1mol Fe: 1mol P After mixing, high-speed ball milling in absolute ethanol (AR) medium for 20h (rotation speed 200r / mimn. After drying at 105-120°C, the precursor was obtained, and the dried precursor was placed in a high-temperature furnace. In a nitrogen (>99.5%) atmosphere, calcining at a high temperature of 500-750° C. for 24 hours to obtain the strontium and barium activated lithium iron phosphate cathode material of the present invention.
Embodiment 3
[0028] Li2CO3 (99.73%, SrCO (99.8%), BaCO3 (99.8%), FeC2O4.2H2O (99.06%), NH4H2PO4 (98%) raw materials, according to the ratio of 1mol Li: 0.00005mol Sr: 0.003mol Ba: 1mol Fe: 1mol P After mixing, high-speed ball milling in absolute ethanol (AR) medium for 20h (rotation speed 200r / mimn. After drying at 105-120°C, the precursor was obtained, and the dried precursor was placed in a high-temperature furnace. In a nitrogen (>99.5%) atmosphere, calcining at a high temperature of 500-750° C. for 24 hours to obtain the strontium and barium activated lithium iron phosphate cathode material of the present invention.
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