A low-temperature lithium iron phosphate lithium-ion power battery
A technology for lithium iron phosphate and power batteries, applied in battery electrodes, secondary batteries, circuits, etc., can solve the problems of poor low-temperature performance and achieve the effects of improving low-temperature performance, less active groups, and less side reactions
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Embodiment 1
[0052] Example 1: 36Ah lithium iron phosphate lithium ion power battery
[0053] Such as figure 1 , 2, 3, the lithium iron phosphate lithium ion power battery of the present invention includes a positive electrode sheet 2, a negative electrode sheet 3, a diaphragm 5, an electrolyte (not marked), a casing 1, a cover plate (not marked) and a pole 4, and the battery size It is 36mm×130mm×155mm.
[0054] Positive electrode sheet: The thickness of the positive electrode sheet is 145±2μm; the positive electrode active material is nano-sized lithium iron phosphate coated with a discontinuous graphene structure; the median particle size of the nano-sized lithium iron phosphate is 5-10nm, and the graphene is 3-8 layers of multilayer graphene, the coating area accounts for 40%-70% of the total surface area of the lithium iron phosphate material; the binder is polyvinylidene fluoride; the conductive agent is a mixture of acetylene black and carbon nanotubes (CNT) , The weight percen...
Embodiment 2
[0060] Example 2: 50Ah lithium iron phosphate lithium ion power battery
[0061] The battery is the same as in Embodiment 1, including a positive electrode sheet, a negative electrode sheet, a separator, an electrolyte, a casing, a cover plate, and a pole. The size of the battery in this embodiment is 45mm×120mm×187mm.
[0062] Positive electrode sheet: the thickness of the positive electrode sheet is 144±2μm; the positive electrode active material is nano-sized lithium iron phosphate coated with a discontinuous graphene structure; the median particle size of the nano-sized lithium iron phosphate is 5-10nm, and the graphene is 3-8 layers of multi-layer graphene, the coating area accounts for 40%-70% of the total surface area of the lithium iron phosphate material. The binder is polyvinylidene fluoride; the conductive agent is a mixture of acetylene black and carbon nanotubes (CNT), and the weight percentage of acetylene black and CNT is 50%: 50%; the weight percentage of po...
example 2
[0067] The battery of Example 2 was tested: after the battery was fully charged at room temperature, it was stored at -40°C±2°C for 20 hours, and then at the same temperature, it was charged with 3I 3 (A) Current discharge until the end-of-discharge voltage is 2.0V, and the discharge capacity is 93.2% of the rated capacity.
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