Oleophylic sulfur electrode preparation method
A technology of sulfur electrode and porous electrode, which is applied in the field of lithium-sulfur battery positive electrode and its preparation, can solve the problems of reduced battery discharge capacity, reduced cycle stability, and aggravated lithium polysulfide dissolution and loss, and achieves improved capacity retention and low raw material costs. Low, the effect of improving Coulombic efficiency and cycle stability
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Embodiment 1
[0026] Add oil furnace carbon (XC-72) and polyvinylidene fluoride to N-methylpyrrolidone at a ratio of 9:1, and fully stir, wherein the solid content is 5%, to obtain slurry A; Evenly coated on Torry060 carbon paper, dried at 90°C to obtain pole piece B, the coating thickness on carbon paper is 10 μm; 50% sulfur-carbon nanotube composite, acetylene black and Polyvinylidene fluoride was added to N-methylpyrrolidone at a ratio of 7:2:1, and fully stirred. Among them, the solid content was 15%, and slurry C was obtained; the slurry C was evenly coated on the pole piece B, and after After drying at a temperature of 50°C, the positive pole piece D of a traditional lithium-sulfur battery is obtained, and the sulfur loading is 3.5mg / cm 2 . Ultrasonically mix methyl hydrogen-containing silicone oil (viscosity of silicone oil is 5Pa·S) and isopropanol at a volume ratio of 1:10 to obtain a silicone oil mixture. On the pole piece, after it is uniformly dispersed, vacuum filter for 20 m...
Embodiment 2
[0028] Add oil furnace carbon (XC-72) and polytetrafluoroethylene into N-methylpyrrolidone at a ratio of 99:1, and fully stir, wherein the solid content is 50%, to obtain slurry A; Uniformly coated on Torry090 carbon paper and dried at 50°C to obtain pole piece B, the coating thickness on carbon paper is 50 μm; 90% sulfur-carbon airgel composite, carbon nano Add tube and polytetrafluoroethylene into N-methylpyrrolidone at 8:1:1, and stir thoroughly, wherein the solid content is 5%, to obtain slurry C; evenly coat slurry C on pole piece B , after being dried at a temperature of 90°C, the positive pole piece D of the traditional lithium-sulfur battery is obtained, and the sulfur loading is 0.5mg / cm 2 . Ultrasonically mix methylphenyl silicone oil (viscosity of silicone oil is 100Pa·S) and carbon tetrachloride at a volume ratio of 1:0.5 to obtain a silicone oil mixture, put the pole piece D on the Buchner funnel, and add the silicone oil mixture dropwise Put it on the pole piec...
Embodiment 3
[0030]Add oil furnace carbon (XC-72) and polyvinylidene fluoride to N-methylpyrrolidone at a ratio of 9:1, and fully stir, wherein the solid content is 10%, to obtain slurry A; Uniformly coated on Torry060 carbon paper, after drying at a temperature of 90°C, the pole piece B was obtained, and the coating thickness on the carbon paper was 10 μm; 50% sulfur-activated carbon composite, acetylene black and poly Vinylidene fluoride was added to N-methylpyrrolidone at a ratio of 9:0:1, and fully stirred, wherein the solid content was 15%, to obtain slurry C; evenly coated slurry C on pole piece B, after temperature After being dried at 50°C, the positive electrode piece D of the traditional lithium-sulfur battery is obtained, and the sulfur loading is 4.5mg / cm 2 . Ultrasonically mix simethicone oil (viscosity of silicone oil is 15Pa·S) and isopropanol at a volume ratio of 1:10 to obtain a silicone oil mixture. On the chip, after it is uniformly dispersed, it is vacuum filtered for...
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