Polymer blocked layer material for lithium-sulfur battery and preparation method thereof
A lithium-sulfur battery and polymer technology, applied in the field of electrochemical energy storage, can solve the problems of complicated operation and expensive raw materials, and achieve the effects of simple operation, cheap raw materials, and excellent anti-self-discharge capability.
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Embodiment 1
[0033] (1) Carbon nanofiber film adopts electrospinning technology to make, prepares the N,N-dimethylformamide solution of 3mg / ml polyacrylonitrile, inhales it in the syringe and treats the electrospinning procedure as spinning solution; The wire equipment uses a voltage of 15kV, the distance between the injector and the collector is adjusted to 15cm, and the required polyacrylonitrile film precursor is prepared after 2 hours.
[0034] (2) Put the precursor film in a tube furnace, pretreat it in air atmosphere at 280°C for 3h, then replace it with nitrogen atmosphere at 800°C for 2h carbonization, you can get the required carbon nanofiber film, cut it into a diameter of A 1.4cm circular piece has a thickness of 25μm and a mass of 0.2772mg, so its surface mass is 0.18mg / cm 2 ,.
[0035] (3) Dissolve gum arabic in distilled water to prepare a 7 mg / ml solution.
[0036] (4) According to the mass ratio of the carbon nanofiber membrane and the gum arabic being 1:1, add 39.5 μl of...
Embodiment 2
[0039] (1) dissolving polyacrylonitrile in N, N-dimethylformyl solvent, configuring a solution of 2 mg / ml polyacrylonitrile, and preparing a polyacrylonitrile film precursor by electrospinning;
[0040] (2) Carbonize the precursor film in a nitrogen atmosphere at 900°C for 2.5 hours to obtain the desired carbon nanofiber film, which is cut into circular pieces with a diameter of 1.6 cm, a thickness of 19 μm, and a mass of 0.3 mg. Its surface quality is 0.15mg / cm 2 .
[0041] (3) Dissolve gum arabic in distilled water to prepare a 5 mg / ml solution.
[0042] (4) According to the mass ratio of carbon nanofiber membrane and gum arabic being 1.5:1, 40 μl of gum arabic solution is added dropwise on the carbon nanofiber membrane;
[0043] (5) Vacuum drying at 70°C for 20 hours, other conditions as in Example 1, the thickness of the prepared carbon nanofiber-gum arabic composite film is 19 μm, and the surface weight is 0.25 mg / cm2 .
Embodiment 3
[0045] (1) dissolving polyacrylonitrile in N,N-dimethylformyl solvent, configuring a solution of 1 mg / ml polyacrylonitrile, and preparing a polyacrylonitrile film precursor by electrospinning;
[0046] (2) Carbonize the precursor film in a nitrogen atmosphere at 1000°C for 3 hours to obtain the desired carbon nanofiber film, which is cut into circular pieces with a diameter of 1.5 cm, a thickness of 17 μm, and a mass of 0.21 mg. The mass is 0.12mg / cm 2 .
[0047] (3) Dissolve gum arabic in distilled water to prepare a 4 mg / ml solution.
[0048] (4) According to the mass ratio of carbon nanofiber membrane and gum arabic is 2:1, 28.7 μ l of gum arabic solution is added dropwise on the carbon nanofiber membrane;
[0049] (5) Vacuum drying at 80°C for 16 hours, other conditions as in Example 1, the thickness of the prepared carbon nanofiber-gum arabic composite film is 17 μm, and the surface weight is 0.18 mg / cm 2 .
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