Method for prolonging the storage time of lithium battery and lithium battery positive electrode material
A positive electrode material and storage time technology, applied in battery electrodes, secondary battery repair/maintenance, circuits, etc., can solve problems such as lithium battery failure, lithium ion battery failure, voltage drop, etc., to improve failure, improve self-discharge, The effect of prolonging storage time
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Embodiment 6
[0017] Example 6 is a comparative example without adding lithium iron phosphate.
Embodiment 1
[0019] The lithium battery positive electrode material of the present embodiment, its formula is to be made up of each component of following percentage by weight: positive electrode active material 89%, lithium iron phosphate 1%, conductive agent 5% and binding agent 5%; Said positive electrode active material It is lithium cobaltate, the conductive agent is graphite, and the binder is polyvinylidene fluoride.
[0020] The lithium battery made of this positive electrode material has been tested experimentally. After the electrical appliances with this battery are used, the storage time of the battery is t=(1000×1%+1000×1%×15%) / (10 / 1000 )=1150h, that is, 48 days, that is, the lithium battery fails after 48 days.
Embodiment 2
[0022] The lithium battery cathode material of the present embodiment, its formula is to be made up of each component of following percentage by weight: positive electrode active material 85%, lithium iron phosphate 5%, conductive agent 5% and binding agent 5%; Said positive electrode active material It is lithium cobaltate, the conductive agent is graphite, and the binder is polyvinylidene fluoride.
[0023] The lithium battery made of this positive electrode material has been tested experimentally. After the electrical appliances with this battery are used, the storage time of the battery is t=(1000×1%+1000×5%×15%) / (10 / 1000 )=1750h, that is, 73 days, that is, the lithium battery fails after 73 days.
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