Energy storage battery and production method thereof
An energy storage battery and electrolyte technology, which is applied in the manufacture of electrolyte batteries, secondary batteries, battery electrodes, etc., can solve the problems of serious self-discharge, unevenness, high price, etc., to improve specific energy, increase specific energy, and improve safety effect
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Embodiment 1
[0047] The present invention provides an energy storage battery. The energy storage battery includes a positive electrode, a negative electrode, an electrolyte and a separator, the electrolyte is filled between the positive electrode and the negative electrode, and the separator is located between the positive electrode and the negative electrode. The positive electrode uses an active compound containing lithium as the positive electrode active material, and the negative electrode uses sulfur element as the negative electrode active material.
[0048] In a preferred embodiment, the positive electrode uses a high-voltage lithium-ion battery positive electrode material as the positive electrode active material, and the negative electrode uses a lithium-sulfur battery positive electrode material as the negative electrode active material.
[0049] The positive active material is LiCoO 2 、LiNi x co y mn z o 2 、xLi 2 MnO 3 ·(1-x)LiMO 2 , LiMn 2 o 4 、LiNi 0.5 mn 1.5 o 4 、...
Embodiment 2
[0058] The preparation method of the energy storage battery of the present invention comprises:
[0059] Positive electrode preparation: Dissolve polyvinylidene fluoride in an appropriate amount of N-methylpyrrolidone to form a uniform solution; then add positive electrode active material LiNi to the uniform solution 0.5 mn 1.5 o 4 , conductive agent acetylene black and dispersant polyaniline, stir until uniform slurry, then apply the slurry on the aluminum foil, and dry to obtain the positive electrode of the battery; wherein LiNi 0.5 mn 1.5 o 4 The mass ratio of acetylene black, polyvinylidene fluoride and polyaniline is 8:1:0.6:0.4, and the thickness of the slurry coated on the aluminum foil is 95 μm. It should be noted that, in this embodiment, the positive electrode active material adopts LiNi 0.5 mn 1.5 o 4 , in other embodiments, the positive electrode active material can also be LiCoO 2 、LiNi x co y mn z o 2 、xLi 2 MnO 3 ·(1-x)LiMO 2 , LiMn 2 o 4 、LiMP...
Embodiment 3
[0065] The preparation method of the energy storage battery of the present invention comprises:
[0066] Positive electrode preparation: Dissolve polyvinylidene fluoride in an appropriate amount of N-methylpyrrolidone to form a uniform solution; then add positive electrode active material LiNi to the uniform solution 0.5 mn 1.5 o 4 , conductive agent acetylene black and dispersant polyaniline, stir until uniform slurry, then apply the slurry on the aluminum foil, and dry to obtain the positive electrode of the battery; wherein LiNi 0.5 mn 1.5 o 4 The mass ratio of acetylene black, polyvinylidene fluoride and polyaniline is 9.8:2:1:1, and the thickness of the slurry coated on the aluminum foil is 200 μm. It should be noted that, in this embodiment, the positive electrode active material adopts LiNi 0.5 mn 1.5 o 4 , in other embodiments, the positive electrode active material can also be LiCoO 2 、LiNi x co y mn z o 2 、xLi 2 MnO 3 ·(1-x)LiMO 2 , LiMn 2 o 4 、LiMPO...
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