LiFePO4 composite type positive pole material and preparation method thereof
A cathode material, composite technology, applied in battery electrodes, electrical components, circuits, etc., can solve the problems of low electronic conductivity ion diffusion rate, inability to form electronic conduction, the influence of insertion and extraction movement, etc., to achieve high rate, good rate , the effect of improving energy density and pole piece processing performance
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Embodiment 1
[0022] Nasicon Lithium Fast Ion Conductor Li 3 Fe 2 (PO 4 ) 3 Crystal nuclei and LiFePO 4 Composite material for / C shell.
[0023] The preparation steps are as follows:
[0024] LiOH·H 2 O, NH 4 h 2 PO 4 , Fe(NO 3 )3 9H 2 O dissolves in secondary water, and goes to Fe(NO 3 ) 3 A certain amount of citric acid is added to the solution, and the ratio of citric acid to metal ions is 1:1. Then, while stirring, the LiOH·H 2 O, NH 4 h 2 PO 4 Add the solution dropwise to the above iron salt solution, adjust the pH to 3-5 with dilute ammonia water, stir in a water bath at 60-80°C for 4-6 hours to form a dark green sol, and dry at 120°C to obtain a gel. Cool and grind the dry gel, then pretreat it in an ordinary horse-boiling furnace at 300-600°C for 4-8 hours, cool and grind it to obtain Nasicon lithium fast ion conductor Li with good crystallinity 3 Fe 2 (PO 4 ) 3 . Then with the above-prepared Li 3 Fe 2 (PO 4 ) 3 For the crystal nucleus, add a certain amoun...
Embodiment 2
[0027] Nasicon Lithium Fast Ion Conductor Li 3 V 2 (PO 4 ) 3 Crystal nuclei and LiFePO 4 Composite material for / C shell.
[0028] The preparation steps are as follows:
[0029] Respectively weigh the LiOH·H according to the stoichiometric ratio 2 O, NH4VO3 is dissolved in secondary water, and a certain amount of citric acid is weighed and dissolved in secondary water according to the ratio of citric acid to metal ions of 1:1. Then various aqueous solutions were stirred with H 3 PO 4 Mix, adjust the pH to 3-6 with dilute ammonia water, stir in a water bath at 70-90°C for 4-8 hours to form a sol, and dry at 120°C to obtain a gel. Cool and grind the dry gel, then pretreat it in a horse-boiler furnace at 300-600°C for 4-8 hours, cool and grind it to obtain Nasicon lithium fast ion conductor Li with good crystallinity 3 V 2 (PO 4 ) 3 . Then with the above-prepared Li 3 V 2 (PO 4 ) 3 For the crystal nucleus, add a certain amount of FeC 2 o 4 2H 2 O, NH 4 h 2 P...
Embodiment 3
[0032] Nasicon Lithium Fast Ion Conductor Li 3 In 2 (PO 4 ) 3 Crystal nuclei and LiFePO 4 Composite material for / C shell.
[0033] The preparation steps are as follows:
[0034] First weigh a certain amount of lithium hydroxide and indium nitrate and dissolve them in secondary water respectively, and then weigh a certain amount of citric acid and dissolve them in secondary water according to the molar ratio of citric acid and metal ions being 1:1. Then various aqueous solutions were stirred with H 3 PO 4 Mix, adjust the pH to 4-6.5 with dilute ammonia water, stir in a water bath at 70-90°C for 4-8 hours to form a sol, and dry at 120°C to obtain a gel. Cool and grind the dry gel, then pretreat it in a horse-boiler furnace at 300-600°C for 4-8 hours, cool and grind it to obtain Nasicon lithium fast ion conductor Li with good crystallinity 3 In 2 (PO 4 ) 3 . Then with the above-prepared Li 3 In 2 (PO 4 ) 3 For the crystal nucleus, add a certain amount of FeC 2 o...
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