Preparation method of selenium and barium activated lithium iron phosphate anode materials
A technology of lithium iron phosphate and cathode material, applied in battery electrodes, electrical components, circuits, etc.
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Embodiment 1
[0026] Li2CO3 (99.73%), Se (99.99%), BaCO3 (99.8%), FeC2O4.2H2O (99.06%), NH4H2PO4 (98%) raw materials, according to 1mol Li: 0.00002mol Se: 0.0003mol Ba: 1mol Fe: 1mol P After proportional mixing, high-speed ball milling in absolute ethanol (AR) medium for 20h (rotation speed 200r / min. After drying at 105-120°C, the precursor was obtained, and the dried precursor was placed in a high-temperature furnace. In a pure nitrogen (>99.5%) atmosphere, calcining at a high temperature of 500-750° C. for 24 hours to obtain the selenium and barium activated lithium iron phosphate cathode material of the present invention.
Embodiment 2
[0027] Embodiment 2 (not mixed with contrast)
[0028] With Li2CO3 (99.73%), FeC2O4.2H2O (99.06%), NH4H2PO4 (98%) raw material, after mixing according to the ratio of 1molLi: 1mol Fe: 1mol P, in absolute ethanol (AR) medium, high-speed ball milling 20h (rotating speed 200r / min. After drying at 105-120°C, the precursor is obtained, and the dried precursor is placed in a high-temperature furnace, and calcined at 500-750°C for 24 hours in an ordinary pure nitrogen (>99.5%) atmosphere. That is, the lithium ion positive electrode material is obtained.
[0029] Using the testing equipment of the prior art and the testing method of the prior art, the selenium, barium activated lithium iron phosphate positive electrode material of the above embodiment 1, and the non-doped comparison example 2 are tested and the results are as follows:
[0030] The selenium and barium activated lithium iron phosphate positive electrode material in Example 1 of the present invention has an initial dis...
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