Preparation method of graphene-loaded metal oxide electrode material
A technology for loading metals and electrode materials, applied in the fields of hybrid capacitor electrodes, hybrid/electric double layer capacitor manufacturing, hybrid capacitor current collectors, etc., can solve the problems of unsuitability for large-scale applications, low production efficiency, and low spray rate
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Embodiment 1
[0025] [Example 1] rGO / NiCo 2 o 4 Compound electrode
[0026] Step 1. Configuration of GO aqueous solution
[0027] 200 mL of GO aqueous solution with a concentration of 0.7 mg / mL was prepared with a GO raw material slurry with a concentration of 1 wt %;
[0028] Step 2. Preparation of precursor solution
[0029] Taking the mass ratio of GO to metal salt as 1:5 as an example, weigh 0.23g of Ni(NO 3 ) 2 ·6H 2 O and 0.46g of Co(NO 3 ) 2 ·6H 2 O was dissolved in 16mL of ethanol and 64mL of ethylene glycol, and then 200mL of the above-mentioned GO aqueous solution was added; mixed for 2h under the assistance of ultrasound to obtain a uniform precursor mixed solution;
[0030] Step 3. Sample Preparation
[0031] First, fix the nickel foam on the surface of the heating table and heat it to 400°C; after that, put the prepared precursor mixed solution into the syringe, and set the liquid feeding speed to 0.5mL / min, and the carrier gas pressure to 0.2MPa, adjust the power of...
Embodiment 2
[0039] [Example 2] rGO / NiFe 2 o 4 Compound electrode
[0040] Step 1. Configuration of GO aqueous solution
[0041] 200 mL of GO aqueous solution with a concentration of 0.1 mg / mL was prepared with a concentration of 1 wt % GO raw material slurry;
[0042] Step 2. Preparation of precursor solution
[0043] Taking the mass ratio of GO to metal salt as 1:10 as an example, weigh 0.47g of Ni(NO 3 ) 2 ·6H 2 O and 0.94g of Fe(NO 3 ) 2 9H 2 O was dissolved in 16 mL of ethanol and 64 mL of ethylene glycol, and then 200 mL of the above-mentioned GO aqueous solution was added, and mixed for 2 h under the assistance of ultrasound to obtain a uniform precursor mixed solution;
[0044] Step 3. Sample Preparation
[0045] First, fix the copper foam on the surface of the heating table and heat it to 350°C; after that, put the prepared precursor mixed solution into the syringe, and set the liquid feeding speed to 0.3mL / min, and the carrier gas pressure to 0.15MPa, adjust the power ...
Embodiment 3
[0047] [Example 3] rGO / CoO composite electrode
[0048] Step 1. Configuration of GO aqueous solution
[0049] 200 mL of GO aqueous solution with a concentration of 0.35 mg / mL was prepared with a GO raw material slurry with a concentration of 1 wt %;
[0050] Step 2. Preparation of precursor solution
[0051] Taking the mass ratio of GO and metal salt as 1:15 as an example, weigh 2.1g of Co(NO 3 ) 2 ·6H 2 O was dissolved in 80mL ethanol, and then 200mL of the above-mentioned GO aqueous solution was added, and mixed for 2h under the assistance of ultrasound to obtain a uniform precursor mixed solution;
[0052] Step 3. Sample Preparation
[0053] First, the cleaned copper foil was fixed on the surface of the heating table, and heated to 500 °C; after that, the prepared precursor mixed solution was filled into the syringe, and the liquid feeding speed was set to 0.1 mL / min. The air pressure is set to 0.1MPa, and the power of the ultrasonic atomizing nozzle is adjusted betwe...
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