Ligand-coated doped lithium iron phosphate as well as preparation method and application thereof
A lithium iron phosphate, doped technology, applied in the direction of active material electrodes, electrical components, electrochemical generators, etc., can solve the problems of poor modification effect, etc., to achieve improved electrochemical performance, excellent structure, and reduced cracking The effect of probability
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Embodiment 1
[0055] The ligand-coated doped lithium iron phosphate of this embodiment has a chemical formula of LiFePO 4 @Mn-Zn / Ga-C / N.
[0056] The preparation method of the ligand-coated doped lithium iron phosphate of this embodiment, the specific steps are as follows:
[0057] (1) Add 100mL of 0.74mol / L ammonium dihydrogen phosphate and 70mL of 0.50mol / L ferric sulfate dropwise into a reactor with a capacity of 500mL and stir, during which time 20mL containing 0.20g of octadecyltrimethylammonium chloride is added dropwise solution, and add an appropriate amount of phosphoric acid to control the pH of the solution to 2.3, send the reaction kettle to the heating box, heat at 585°C for 6 hours under Argon, let stand overnight, filter, wash, and dry to obtain 11.7g of spherical ferric phosphate;
[0058] (2) Mix 2.5g nano-carbon spheres, 0.05g manganese sulfate, 0.05g zinc chloride, 0.05g gallium sulfate, 1.2g methacryloyl, 5mL deionized water, stir, centrifuge, filter, and send to the dr...
Embodiment 2
[0063] The ligand-coated doped lithium iron phosphate of this embodiment has a chemical formula of LiFePO 4 @Mn-Zn / Co-C / N.
[0064] The preparation method of the ligand-coated doped lithium iron phosphate of this embodiment, the specific steps are as follows:
[0065] (1) Add 110mL of 0.74mol / L ammonium dihydrogen phosphate and 73mL of 0.50mol / L ferric sulfate dropwise into a 500mL high-temperature-resistant reactor and stir, during which time 20mL containing 0.20g of octadecyl trimethyl chloride is added dropwise. Ammonium chloride solution, add an appropriate amount of phosphoric acid to control the pH of the solution = 2.3, send the reaction kettle to the heating box, heat at 585°C for 6 hours under Argon, let it stand overnight, filter, wash, and dry to obtain 11.7g of spherical ferric phosphate;
[0066] (2) Mix 2.5g nano-carbon spheres, 0.05g manganese sulfate, 0.05g zinc chloride, 0.05g cobalt sulfate, 1.0g methacryloyl, 5mL deionized water, stir, centrifuge, filter, a...
Embodiment 3
[0071] The ligand-coated doped lithium iron phosphate of this embodiment has a chemical formula of LiFePO 4 @Mn-Co / Cu-C / N.
[0072] The preparation method of the ligand-coated doped lithium iron phosphate of this embodiment, the specific steps are as follows:
[0073] (1) Add 115mL of 0.74mol / L ammonium dihydrogen phosphate and 75mL of 0.50mol / L ferric sulfate dropwise into a 500mL high-temperature-resistant reactor and stir, during which time 25mL containing 0.20g of octadecyl trimethyl chloride is added dropwise. Ammonium chloride solution, add an appropriate amount of phosphoric acid to control the pH of the solution = 2.4, send the reaction kettle to the heating box, heat at 585 ° C for 6 hours under Argon, let it stand overnight, filter, wash, and dry to obtain 11.9 g of spherical ferric phosphate;
[0074] (2) Mix 2.5g nano-carbon spheres, 0.06g manganese sulfate, 0.06g zinc chloride, 0.04g gallium sulfate, 1.5g methacryloyl, 9mL deionized water, stir, centrifuge, filte...
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