Preparation method of aqueous high rate sodium ion battery
A sodium-ion battery and high-rate technology, applied in secondary batteries, circuits, electrical components, etc., can solve the problems of low material utilization, poor conductivity, and low diffusion rate of positive active materials, and achieve simple and easy to operate, Excellent charge and discharge performance and high safety
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Embodiment 1
[0028] A method for preparing an aqueous high-rate sodium-ion battery, comprising the following steps:
[0029] (1) Sodium carbonate, vanadium pentoxide, titanium dioxide and ammonium dihydrogen phosphate are mixed and added to the mixture of organic carbon material and water, stirred and mixed at 3000rpm to obtain a slurry; the slurry is transferred to a hydrothermal kettle, 80 Stirring treatment at ℃ for 3h, after stirring treatment, the obtained material was placed in a beaker and vacuum dried at 80°C to obtain a precursor; the prepared precursor was placed in a crucible and treated in a muffle furnace at 750°C for 8h , making the positive electrode material of sodium ion battery; Wherein, the mol ratio of sodium carbonate, vanadium pentoxide, titanium dioxide, diammonium hydrogen phosphate is 1.4:0.9:0.2:3;
[0030] (2) Mix the sodium ion positive electrode material prepared above with a conductive agent and a binder into an organic solvent, stir and mix to obtain a positi...
Embodiment 2
[0037] A method for preparing an aqueous high-rate sodium-ion battery, comprising the following steps:
[0038] (1) Sodium carbonate, vanadium pentoxide, titanium dioxide and ammonium dihydrogen phosphate are mixed and added to the mixture of organic carbon material and ethanol, stirred and mixed at 3000rpm to obtain a slurry; the slurry is transferred to a hydrothermal kettle, 120 Stirring treatment at ℃ for 3h, after stirring treatment, the obtained material was placed in a beaker and vacuum dried at 80°C to obtain a precursor; the prepared precursor was placed in a crucible and treated in a muffle furnace at 900°C for 8h , making the positive electrode material of sodium ion battery; Wherein, the mol ratio of sodium carbonate, vanadium pentoxide, titanium dioxide, diammonium hydrogen phosphate is 1.4:0.9:0.2:3;
[0039] (2) Mix the sodium ion positive electrode material prepared above with a conductive agent and a binder into an organic solvent, stir and mix to obtain a pos...
Embodiment 3
[0046] A method for preparing an aqueous high-rate sodium-ion battery, comprising the following steps:
[0047] (1) Mix sodium carbonate, vanadium pentoxide, titanium dioxide and ammonium dihydrogen phosphate into the mixture of organic carbon material and water, stir and mix at 3000rpm to obtain a slurry; transfer the slurry to a hydrothermal kettle, 85 Stirring treatment at ℃ for 4h, after stirring treatment, the obtained material was placed in a beaker and vacuum dried at 80°C to obtain a precursor; the prepared precursor was placed in a crucible and treated in a muffle furnace at 7800°C for 10h , making the positive electrode material of sodium ion battery; Wherein, the mol ratio of sodium carbonate, vanadium pentoxide, titanium dioxide, diammonium hydrogen phosphate is 1.4:0.9:0.2:3;
[0048] (2) Mix the sodium ion positive electrode material prepared above with a conductive agent and a binder into an organic solvent, stir and mix to obtain a positive electrode slurry, wh...
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