A kind of super capacitor based on polyaniline-nickel cobalt ferrite and its preparation method
A supercapacitor, nickel-cobalt-iron technology, applied in hybrid capacitor electrodes, chemical instruments and methods, nanotechnology for materials and surface science, etc., can solve the problem of high charge transfer resistance of nickel-cobalt ferrite materials and reduce nickel-cobalt Ferrite electrochemical performance, small specific capacitance and other issues, to achieve the effect of enhancing electrochemical performance, reducing redox potential and improving stability
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Embodiment 1
[0025] (1) Preparation of nickel cobalt ferrite Ni 0.25 co 0.75 Fe 2 o 4 , the preparation method is as follows: add 500mL distilled water to a 1000mL reaction bottle, then weigh 6 parts of anhydrous nickel chloride and 26 parts of anhydrous cobalt chloride and add them to the reaction bottle, and place the reaction bottle in a constant temperature water bath , heated to 50°C and stirred at a constant speed until the solid was dissolved, then weighed 46 parts of sodium citrate and 22 parts of potassium ferricyanide and added them to the reaction flask, and slowly added sodium hydroxide to adjust the pH to 9, then the water bath temperature Raise to 85°C, stir at a constant speed for 5 hours, then transfer the solution in the reaction bottle into a hydrothermal automatic reaction kettle, raise the temperature to 180°C, and react with magnetic stirring for 15 hours. After the reaction is complete, cool the reaction kettle to room temperature, and put the solution Remove the s...
Embodiment 2
[0028] (1) Preparation of nickel cobalt ferrite Ni 0.30 co 0.70 Fe 2 o 4 , the preparation method is as follows: add 500mL distilled water to a 1000mL reaction bottle, then weigh 7 parts of anhydrous nickel chloride and 23 parts of anhydrous cobalt chloride and add them to the reaction bottle, and place the reaction bottle in a constant temperature water bath , heated to 50°C and stirred at a constant speed until the solid was dissolved, then weighed 47 parts of sodium citrate and 23 parts of potassium ferricyanide into the reaction flask, and slowly added sodium hydroxide to adjust the pH to 9, then the water bath temperature Raise to 85°C, stir at a constant speed for 5 hours, then transfer the solution in the reaction bottle into a hydrothermal automatic reaction kettle, raise the temperature to 180°C, and react for 16 hours with magnetic stirring. After the reaction is complete, cool the reaction kettle to room temperature, and dissolve the solution Remove the solvent b...
Embodiment 3
[0031] (1) Preparation of nickel cobalt ferrite Ni 35 co 0.65 Fe 2 o 4 , the preparation method is as follows: add 500mL of distilled water to a 1000mL reaction bottle, then weigh 8 parts of anhydrous nickel chloride and 19 parts of anhydrous cobalt chloride and add them to the reaction bottle, and place the reaction bottle in a constant temperature water bath , heated to 55°C and stirred at a constant speed until the solid was dissolved, then weighed 48 parts of sodium citrate and 25 parts of potassium ferricyanide and added them to the reaction flask, and slowly added sodium hydroxide to adjust the pH to 9, then the water bath temperature Raise to 90°C, stir and react at a constant speed for 6 hours, then transfer the solution in the reaction bottle into a hydrothermal automatic reactor, raise the temperature to 190°C, and react with magnetic stirring for 16 hours. After the reaction is complete, cool the reactor to room temperature, and dissolve the solution Remove the s...
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