Lithium iron phosphate as well as preparation method and application thereof
A lithium iron phosphate, lithium source technology, applied in chemical instruments and methods, phosphorus compounds, nanotechnology for materials and surface science, etc., can solve the problems of impure sintering cost of materials, loss of material properties, uneven mixing of raw materials, etc. , to achieve the effect of fast ammonia droplet acceleration, increased nucleation number, and guaranteed reaction rate
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Embodiment 1
[0058] This embodiment provides a preparation method of lithium iron phosphate, the preparation method comprising:
[0059] 1, the particle diameter is added in the emulsifier solution that is formed by sodium lauryl sulfate and polyoxyethylene alkylphenol ether after vacuum-drying the nano lithium carbonate of 400nm, keeps stirring; Then add butyl acrylate and divinylbenzene ( The two are used as the first initiator), the free radical is used to initiate the first polymerization reaction, the temperature of the first polymerization reaction is 70° C., and the time is 4 hours to obtain the intermediate product A.
[0060] Wherein, the ratio of emulsifying agent and lithium carbonate mol ratio is 0.5:1; The mass ratio of sodium lauryl sulfate and polyoxyethylene alkylphenol ether is 1.5:1, and the mol ratio of divinylbenzene in the first initiator is 5%, the mol ratio of the first initiator and lithium carbonate is 0.5:1.
[0061] 2. Prepare a mixed solution of methyl methacry...
Embodiment 2
[0068] This embodiment provides a preparation method of lithium iron phosphate, the preparation method comprising:
[0069] 1, the particle diameter is added in the emulsifier solution that is formed by sodium lauryl sulfate and polyoxyethylene alkylphenol ether after vacuum-drying the nano lithium carbonate of 400nm, keeps stirring; Then add butyl acrylate and divinylbenzene ( The two are used as the first initiator), the free radical is used to initiate the first polymerization reaction, the temperature of the first polymerization reaction is 70° C., and the time is 4 hours to obtain the intermediate product A.
[0070] Wherein, the molar ratio of emulsifier to lithium carbonate is 0.5:1. The mass ratio of sodium lauryl sulfate and polyoxyethylene alkylphenol ether is 1.5:1, and the mol ratio of divinylbenzene in the first initiator is 5%, and the mol ratio of the first initiator and lithium carbonate is 0.6: 1.
[0071] 2. Prepare a mixed solution of methyl methacrylate, ...
Embodiment 3
[0078] This embodiment provides a preparation method of lithium iron phosphate, the preparation method comprising:
[0079] 1. After vacuum-drying the nano-lithium carbonate with a particle diameter of 300nm, add in the emulsifier solution formed by sodium lauryl sulfate and polyoxyethylene alkylphenol ether, keep stirring; then add butyl acrylate and divinylbenzene ( The two are used as the first initiator), and the free radical is used to initiate the first polymerization reaction. The temperature of the first polymerization reaction is 60° C. and the time is 2 hours, and the intermediate product A is obtained.
[0080] Wherein, the mol ratio of emulsifier and lithium carbonate is 0.5:1. The mass ratio of sodium lauryl sulfate and polyoxyethylene alkylphenol ether is 1:1, and the mol ratio of divinylbenzene in the first initiator is 5%, and the mol ratio of the first initiator and lithium carbonate is 0.6: 1.
[0081] 2. Prepare a mixed solution of methyl methacrylate, div...
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