A kind of preparation method of lithium ion battery
A lithium-ion battery and nickel foam technology, applied in battery electrodes, secondary batteries, circuits, etc., can solve the problems of poor fast charge and discharge performance, unsatisfactory high current discharge performance, high internal impedance, etc., to improve conductivity, High tap density and quality improvement effect
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Embodiment 1
[0029] A preparation method for a lithium ion battery, comprising the following steps:
[0030] (1) Soak the nickel foam in 30% nitric acid aqueous solution for 5 minutes as a conductive current collector, dissolve the iron source, phosphorus source, and glucose in water to make a mixed solution A, add polyphosphate, and mix evenly to make a mixed solution B , Dissolve the precipitant in water to prepare a precipitant solution, add nickel foam into the reactor, then add the mixed solution B and the precipitant solution into the reactor at the same time, coprecipitate for 3-7 hours, and wash the obtained product Obtain iron-phosphorus precursor after drying; Wherein, the addition amount of polyphosphate is 5% of total weight of phosphorus source, iron source and glucose; / Hour;
[0031] (2) After mixing and grinding the iron-phosphorus precursor and lithium hydroxide prepared above, sintering at 720 ° C for 100 min, pressing and slicing to obtain LiFePO 4 Positive plate;
[00...
Embodiment 2
[0037] A preparation method for a lithium ion battery, comprising the following steps:
[0038] (1) Soak the nickel foam in 30% nitric acid aqueous solution for 5 minutes as a conductive current collector, dissolve the iron source, phosphorus source, and glucose in water to make a mixed solution A, add polyphosphate, and mix evenly to make a mixed solution B , Dissolve the precipitant in water to prepare a precipitant solution, add nickel foam into the reactor, then add the mixed solution B and the precipitant solution into the reactor at the same time, coprecipitate for 3-7 hours, and wash the obtained product Obtain iron-phosphorus precursor after drying; Wherein, the addition amount of polyphosphate is 10% of total weight of phosphorus source, iron source and glucose; / Hour;
[0039] (2) After mixing and grinding the iron-phosphorus precursor and lithium hydroxide prepared above, sintering at 960°C for 30min, pressing and slicing to obtain LiFePO 4 Positive plate;
[004...
Embodiment 3
[0045] A preparation method for a lithium ion battery, comprising the following steps:
[0046] (1) Soak the nickel foam in 30% nitric acid aqueous solution for 5 minutes as a conductive current collector, dissolve the iron source, phosphorus source, and glucose in water to make a mixed solution A, add polyphosphate, and mix evenly to make a mixed solution B , Dissolve the precipitant in water to prepare a precipitant solution, add nickel foam into the reactor, then add the mixed solution B and the precipitant solution into the reactor at the same time, coprecipitate for 3-7 hours, and wash the obtained product Obtain iron-phosphorus precursor after drying; Wherein, the addition amount of polyphosphate is 7% of total weight of phosphorus source, iron source and glucose; / Hour;
[0047] (2) After mixing and grinding the iron-phosphorus precursor and lithium hydroxide prepared above, sintering at 750°C for 120min, pressing and slicing to obtain LiFePO 4 Positive plate;
[004...
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