Lithium-sulfur battery using graphene coated carbon/sulfur composite material as positive electrode material
A graphene coating, composite material technology, applied in the direction of lithium battery, positive electrode, battery electrode, etc., can solve the problems of increasing contact resistance, reducing battery rate performance, etc., and achieves the solution of inhibiting dissolution, improving conductivity and low cost. Effect
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Embodiment 1
[0030] This embodiment provides a lithium-sulfur battery using a graphene-coated carbon / sulfur composite material as the positive electrode material, and the specific steps are as follows:
[0031] S1. Mix carbon nanofibers and starch uniformly at a ratio of 1:4, then add them into deionized water, and perform ultrasonic dispersion for 1 hour to obtain a uniformly mixed solution. The viscosity of the mixed solution is suitable for electrospinning;
[0032] S2. Put the mixed solution into a three-necked flask, fix it on an ultrasonic spray device, and raise the temperature of the electromagnetic tube furnace to 550°C at a heating rate of 10°C / min under the protection of argon, and use the ultrasonic wave to dissolve the mixed solution. The solution is atomized and passed through a quartz tube in an electromagnetic tube furnace for spheroidization. After 12 hours, after the solution was completely sprayed, the tube furnace was allowed to cool naturally, and the spheroidized mate...
Embodiment 2
[0037] This embodiment provides a lithium-sulfur battery using a graphene-coated carbon / sulfur composite material as the positive electrode material, and the specific steps are as follows:
[0038] S1. Mix carbon nanofibers and starch uniformly at a ratio of 1:5, then add them into deionized water, and perform ultrasonic dispersion for 3 hours to obtain a uniform mixed solution. The viscosity of the mixed solution is suitable for electrospinning;
[0039] S2. Put the mixed solution into a three-necked flask, fix it on an ultrasonic spray device, and raise the temperature of the electromagnetic tube furnace to 580°C at a heating rate of 10°C / min under the protection of argon, and use the action of ultrasonic waves to dissolve the mixed solution. The solution is atomized and passed through a quartz tube in an electromagnetic tube furnace for spheroidization. After 16 hours, after the solution was completely sprayed, the tube furnace was allowed to cool naturally, and the spheroi...
Embodiment 3
[0044]This embodiment provides a lithium-sulfur battery using a graphene-coated carbon / sulfur composite material as the positive electrode material, and the specific steps are as follows:
[0045] S1. Mix carbon nanofibers and starch evenly at a ratio of 1:4.5, then add them into deionized water, and perform ultrasonic dispersion for 2.5 hours to obtain a uniform mixed solution. The viscosity of the mixed solution is suitable for electrospinning;
[0046] S2. Put the mixed solution into a three-necked flask, fix it on an ultrasonic spray device, and raise the temperature of the electromagnetic tube furnace to 600°C at a heating rate of 10°C / min under the protection of argon, and use the ultrasonic wave to dissolve the mixed solution. The solution is atomized and passed through a quartz tube in an electromagnetic tube furnace for spheroidization. After 18 hours, after the solution was completely sprayed, the tube furnace was allowed to cool naturally, and the spheroidized mater...
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