Molybdenum and barium activated lithium iron phosphate cathode material
A lithium iron phosphate, cathode material technology, applied in battery electrodes, electrical components, circuits, etc., can solve the problems of low tap density and poor conductivity, and achieve the effects of improving electronic conductivity, reducing impedance and reducing unit cell volume.
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Embodiment 1
[0023]Li2CO3 (99.73%), (NH4) 6Mo7O24.4H2 (99.8%), BaCO3 (99.8%), FeC2O4.2H2O (99.06%), NH4H2PO4 (98%) raw material, according to 1mol Li: 0.00002mol Mo: 0.0003mol Ba: After mixing 1mol Fe: 1mol P ratio, in absolute ethanol (AR) medium, high-speed ball milling (rotation speed 200r / mimn) for 20h. After drying at 105-120°C, the precursor was obtained, and the dried precursor was placed at high temperature In a furnace, in an ordinary pure nitrogen (>99.5%) atmosphere, calcining at a high temperature of 500-750° C. for 24 hours to obtain the molybdenum and barium activated lithium iron phosphate cathode material of the present invention.
Embodiment 2
[0025] Li2CO3 (99.73%), (NH4) 6Mo7O24.4H2 (99.8%), BaCO3 (99.8%), FeC2O4.2H2O (99.06%), NH4H2PO4 (98%) raw material, according to 1mol Li: 0.00004mol Mo: 0.001mol Ba: After mixing 1mol Fe: 1mol P ratio, in absolute ethanol (AR) medium, high-speed ball milling (rotation speed 200r / mimn) for 20h. After drying at 105-120°C, the precursor was obtained, and the dried precursor was placed at high temperature In a furnace, in an ordinary pure nitrogen (>99.5%) atmosphere, calcining at a high temperature of 500-750° C. for 24 hours to obtain the molybdenum and barium activated lithium iron phosphate cathode material of the present invention.
Embodiment 3
[0027] Li2CO3 (99.73%), (NH4) 6Mo7O24.4H2 (99.8%), BaCO3 (99.8%), FeC2O4.2H2O (99.06%), NH4H2PO4 (98%) raw material, according to 1mol Li: 0.00005mol Mo: 0.003mol Ba: After mixing 1mol Fe: 1mol P ratio, in absolute ethanol (AR) medium, high-speed ball milling (rotation speed 200r / mimn) for 20h. After drying at 105-120°C, the precursor was obtained, and the dried precursor was placed at high temperature In a furnace, in an ordinary pure nitrogen (>99.5%) atmosphere, calcining at a high temperature of 500-750° C. for 24 hours to obtain the molybdenum and barium activated lithium iron phosphate cathode material of the present invention.
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