Method for preparing monodisperse metal atom/graphene composite material employing electrochemical dissolved graphite
A metal atom and composite material technology, which is applied in the field of electrochemically swollen graphite to prepare monodisperse metal atom/graphene composite materials, can solve the problems of difficult to achieve atomic monolayer distribution, prone to agglomeration, and high single atoms.
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Embodiment 1
[0112] (1) Put the block graphite directly into a polyethylene bag to make an anode and a cathode. The distance between the anode and cathode was 5 mm, and the average pore size of the polyethylene bag was 0.2 μm. (2) Apply a DC voltage of +5 V to -5 V between the anode and the cathode, electrolyze for 120 h, exchange the electrodes every 30 min, and control the electrolysis temperature at 25 °C. The electrolyte is 10 mg / ml sodium sulfate aqueous solution. The ratio of the electrolyte solution to the total mass of the graphite component in the electrode is 10 ml / g. After electrolysis, a polyethylene bag with a pore size of 10 μm was used to separate the solids from the electrolyte. The solids remain in the bag and the electrolyte is flung out. (3) Disperse the solid obtained by solid-liquid separation in deionized water, using a frequency of 5 KHz, a power density of 100 W, ultrasonication for 10 h, and a temperature of 25 °C. The concentration of the solid in deionized wa...
Embodiment 2
[0114] (1) Put graphite plates directly into polypropylene bags to make anode and cathode. The distance between the anode and cathode was 5 mm, and the average pore size of the polypropylene bag was 0.2 μm. (2) Apply a DC voltage of +5 V to -5 V between the anode and the cathode, electrolyze for 120 h, exchange the electrodes every 30 min, and control the electrolysis temperature at 25 °C. The electrolyte is 50 mg / ml magnesium nitrate aqueous solution. The ratio of the electrolyte solution to the total mass of the graphite component in the electrode is 10 ml / g. After electrolysis, a polyethylene bag with a pore size of 10 μm was used to separate the solids from the electrolyte. The solids remain in the bag and the electrolyte is flung out. (3) Disperse the solid obtained by solid-liquid separation in deionized water to form a slurry, and the concentration of the slurry is 10 mg / ml. Then 50.0 g of agate ball milling balls with a diameter of 1-1.3 cm were sealed together wit...
Embodiment 3
[0116] (1) Put graphite rods directly into polystyrene bags to make anode and cathode. The distance between the anode and cathode was 5 mm, and the average pore size of the polystyrene bag was 0.2 μm. (2) Apply a DC voltage of +5 V to -5 V between the anode and the cathode, electrolyze for 120 h, exchange the electrodes every 30 min, and control the electrolysis temperature at 25 °C. The electrolyte is 100 mg / ml calcium chloride aqueous solution. The ratio of the electrolyte solution to the total mass of the graphite component in the electrode is 10 ml / g. After electrolysis, a polystyrene bag with a pore size of 10 μm was used to separate the solids from the electrolyte. The solids remain in the bag and the electrolyte is flung out. (3) Disperse the solid obtained by solid-liquid separation in deionized water to form a slurry, and the concentration of the slurry is 1 mg / ml. 1500.0 g of zirconia ball milling balls with a diameter of 3-8 mm were sealed together with the slur...
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