Flexible solid-state supercapacitor and preparation method thereof
A supercapacitor and solid-state technology, which is applied in the direction of solid electrolytic capacitors, capacitors, electrolytic capacitors, etc., can solve the problems that limit the rapid development of new energy vehicles, low power density, and heavy battery weight, so as to facilitate integrated design and improve safety , the effect of reducing weight
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Embodiment 1
[0023] (1) Stir 0.8 parts of nano-alumina, 9 parts of polyoxyethylene, and 8 parts of lithium hexafluorophosphorus in acetonitrile to make a polymer electrolyte slurry; use the scrape coating method to coat the polymer electrolyte Put it on the cut polyester fiber cloth, and vacuum-dry it at 50° C. to constant weight to obtain a separator with a thickness of 45 μm.
[0024] (2) Mechanically stir 0.1 part of polypyrrole and 1 part of polyoxyethylene in acetonitrile for 6 hours to obtain a polymer solution; mechanically stir 21 parts of lithium titanium oxide in acetonitrile solution for 4 hours, then mix with the polymer solution , mechanically stirred for 2 hours, and vacuum-dried at 50°C to constant weight to obtain an active material coated with a polymer film; 7 parts of the active material coated with a polymer film were mixed with 2 parts of carbon nanotubes and 1 part of polytetrafluoroethylene Ethylene was mixed evenly in deionized water to make a slurry, coated on one ...
Embodiment 2
[0028] (1) Stir 0.8 parts of barium titanate, 10 parts of polyoxyethylene, and 8 parts of lithium trifluoromethanesulfonate in acetonitrile to make a polymer electrolyte slurry; use the scraping method to coat the polymer electrolyte Put it on the cut glass fiber cloth, and vacuum-dry it at 50° C. to constant weight to obtain a separator with a thickness of 50 μm.
[0029](2) Mechanically stir 0.2 parts of polyaniline and 2 parts of polyoxyethylene in N-methylpyrrolidone for 6 hours to obtain a polymer solution; mechanically stir 18 parts of lithium titanium oxide in N-methylpyrrolidone for 4 hours After mixing with the polymer solution, mechanically stirring for 2 hours, vacuum-drying at 80° C. to constant weight, the active material coated by the polymer film was obtained; 7 parts of the active material coated by the polymer film were mixed with 6 parts of carbon nanofibers, 4 parts of polytetrafluoroethylene were mixed evenly in deionized water to make a slurry, coated on o...
Embodiment 3
[0033] (1) Stir 0.9 parts of nano-silica, 10 parts of polyvinylidene fluoride, and 8 parts of lithium trifluoromethanesulfonate in N-methylpyrrolidone to make a polymer electrolyte slurry; The polymer electrolyte was coated on the cut glass fiber cloth, and vacuum-dried at 80°C to constant weight to obtain a separator with a thickness of 50um.
[0034] (2) Weigh 0.1 part of polypyrrole and 1 part of polyoxyethylene in acetonitrile and mechanically stir for 4 hours to obtain a polymer solution; mechanically stir 21 parts of lithium iron oxide in acetonitrile solution for 4 hours and mix with the polymer solution , mechanically stirred for 2 hours, vacuum-dried to constant weight at 50° C. to obtain an active material coated with a polymer film; get 8 parts of active material coated with a polymer film, mix with 1.5 grams of carbon nanotubes, 0.5 grams of polytetrafluoroethylene Ethylene deionized water was mixed evenly to make a slurry, coated on one side of the diaphragm, and ...
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