Preparation method of negative electrode of energy storage device, negative electrode of energy storage device, energy storage device, energy storage system, electrical equipment
A device and energy storage technology, which is applied in the field of new energy, can solve the problems of reducing battery energy density, poor electrolyte compatibility, and different particle sizes, and achieve the effects of improving energy density, uniform materials, and high energy density
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[0052] In a first aspect, in at least one embodiment, a method for preparing a negative electrode of an energy storage device is provided, comprising the following steps: heating and pre-treating the dried paper compounded with a sulfur-containing salt under an inert atmosphere to generate a sulfur-containing gas, Then, it is further heated to realize the carbonization of the paper and the doping of sulfur to obtain the negative electrode of the energy storage device.
[0053] The preparation method of the negative electrode of the above-mentioned energy storage device is simple in process, low in cost, and suitable for industrial production. By heating the paper compounded with sulfur-containing salt twice to achieve uniform and stable doping of sulfur in carbon, forming a sulfur-doped Porous carbon fiber network material, which is the negative electrode of energy storage devices. The negative electrode does not contain metal current collectors and binders, which reduces its o...
Embodiment 1
[0089] A method for preparing a negative electrode of an energy storage device, comprising the following steps:
[0090] (a) Soak the printing paper in 0.5wt.% sodium pyrosulfate solution, let it stand for 8 hours, and then dry it in vacuum;
[0091] (b) heating the dried paper compounded with sodium sulfide obtained in step (a) to 300° C. at a heating rate of 1° C. / min under a helium atmosphere, and keeping it warm for 8 hours;
[0092] (c) Heating to 1050°C at a heating rate of 8°C / min, and keeping the temperature for 6 hours;
[0093] (d) cleaning and drying the carbonized product obtained in step (c) to obtain the negative electrode of the energy storage device.
Embodiment 2
[0095] A method for preparing a negative electrode of an energy storage device. The difference from Example 1 is that the concentration of sodium pyrosulfate solution in this example is 6%, and the remaining steps and parameters are the same as those in Example 1.
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