A kind of doped modified lithium ion battery vanadate negative electrode material and preparation method thereof
A technology for lithium ion batteries and negative electrode materials, applied in battery electrodes, active material electrodes, negative electrodes, etc., can solve the problems of low conductivity and volume expansion of materials, and achieve the effects of expanding intercalation and deintercalation channels, easy control, and simple operation.
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Embodiment 1
[0028] Accurately weigh 0.85mol Fe(OH) 3 , 0.14molSb(OH) 3 , 1.0molNH 4 VO 3 , 0.03mol NH 4 F, put into the ball milling tank of the planetary ball mill, add deionized water, and ball mill to obtain a rheological phase mixture. While stirring, 1.0 mol / L oxalic acid solution was added dropwise to the rheological phase mixture, the pH of the mixture was adjusted to 5.8, and the mixture was fully stirred. The mixture was transferred to a stainless steel high-pressure tank, reacted at a constant temperature of 220° C. for 24 hours, taken out and dried, and then the solid mixture was pulverized to obtain a precursor powder. The precursor powder was heated in a program-controlled electric furnace, heated to 720°C at a heating rate of 5°C / min, and kept for 8 hours to obtain doped modified Fe. 0.85 Sb 0.14 VO 4 F 0.03 Vanadate anode material.
[0029] will be synthesized Fe 0.85 Sb 0.14 VO 4 F 0.03 The vanadate negative electrode material, acetylene black and polytetraflu...
Embodiment 2
[0031] Accurately weigh 0.25mol Fe 2 O 3 , 0.05molSb 2 O 3 , 1.0molNH 4 VO 3 , 0.01mol NH 4 F, put into the ball milling tank of the planetary ball mill, add deionized water, and ball mill to obtain a rheological phase mixture. While stirring, add 0.5 mol / L oxalic acid solution dropwise to the rheological phase mixture, adjust the pH of the mixture to 5.1, and stir well. The mixture was transferred to a stainless steel high-pressure tank, reacted at a constant temperature of 150° C. for 60 hours, taken out and dried, and the solid mixture was ground to obtain a precursor powder. The precursor powder was heated in a program-controlled electric furnace, heated to 500°C at a heating rate of 3°C / min, and kept for 1 hour to obtain doped modified Fe. 0.5 Sb 0.1 VO 4 F 0.01 Vanadate anode material.
[0032] will be synthesized Fe 0.5 Sb 0.1 VO 4 F 0.01 The vanadate negative electrode material, acetylene black and polytetrafluoroethylene are mixed uniformly in a mass ra...
Embodiment 3
[0034] Accurately weigh 0.6mol Fe(OH) 3 , 0.19molmolSb 2 O 3 , 1.0mol NH 4 VO 3 , 0.015mol HF, put it into the ball milling tank of a planetary ball mill, add an appropriate amount of deionized water, and ball mill to obtain a rheological phase mixture. While stirring, 1.0 mol / l oxalic acid solution was added dropwise to the rheological phase mixture, the pH of the mixture was adjusted to 5.5, and the mixture was fully stirred. The mixture was transferred to a stainless steel high-pressure tank, reacted at a constant temperature of 160° C. for 56 hours, taken out and dried, and then the solid mixture was pulverized to obtain a precursor powder. The precursor powder was heated in a program-controlled electric furnace, heated to 600°C at a heating rate of 4°C / min, and kept for 3 hours to obtain doped modified Fe 0.6 Sb 0.38 VO 4 F 0.015 Vanadate anode material.
[0035] will be synthesized Fe 0.6 Sb 0.38 VO 4 F 0.015 The vanadate negative electrode material, acetyle...
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