Electrolyte for nickel-based cathode lithium-ion battery and lithium-ion battery
A lithium-ion battery and electrolyte technology, which is applied in secondary batteries, circuits, electrical components, etc., can solve the problems of low solubility, low concentration and conductivity, poor low-temperature performance electrolyte system, etc., and achieve good high-temperature performance and low-temperature performance. Excellent performance and the effect of improving high temperature performance
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Embodiment 1
[0042] Embodiment 1, a nickel-based cathode lithium-ion battery electrolyte solution provided in this embodiment includes non-aqueous organic solvents, lithium salts and non-lithium salt additives, and also includes boron-containing lithium salt additives, cyclic ether compounds and cyclic Phosphazene compounds, wherein the non-aqueous organic solvent is a mixture of ethylene carbonate, diethyl carbonate and propylene carbonate (1:2:1 by volume), and the non-lithium salt additives are vinyl sulfite and fluorocarbonic acid Vinyl ester, the mass percentage of the two accounts for the total mass of the electrolyte is 2% and 3%, and the lithium salt is LiPF 6 (molar concentration is 1mol / L), the boron-containing lithium salt additive is LiBOB, and its concentration is 0.1mol / L, and the cyclic phosphazene compound is a cyclic phosphazene derivative represented by the following chemical formula (VIII):
[0043]
[0044] The cyclic phosphazene derivative accounts for 2% by mass of...
Embodiment 2
[0045] Embodiment 2, an electrolyte solution for a nickel-based cathode lithium-ion battery provided in this embodiment, includes a non-aqueous organic solvent, a lithium salt and a non-lithium salt additive, and also includes a boron-containing lithium salt additive, a cyclic ether compound, and a cyclic Phosphazene compound, wherein the non-aqueous organic solvent is a mixture of propylene carbonate, dimethyl carbonate and ethyl methyl carbonate (1:2:1 by volume), and the non-lithium salt additive is fluoroethylene carbonate, 1, 3-propane sultone, the mass percentage of the two accounts for the total mass of the electrolyte is 1% and 2%, and the lithium salt is LiPF 6 (molar concentration is 1mol / L), the boron-containing lithium salt additive is LiBF 4 , and its concentration is 0.3mol / L, and the cyclophosphazene compound is a cyclophosphazene derivative represented by the following chemical formula (IV):
[0046]
[0047] The cyclic phosphazene derivative accounts for 4...
Embodiment 3
[0048] Embodiment 3, a nickel-based cathode lithium-ion battery electrolyte solution provided in this embodiment includes non-aqueous organic solvents, lithium salts and non-lithium salt additives, and also includes boron-containing lithium salt additives, cyclic ether compounds and cyclic Phosphazene compounds, wherein the non-aqueous organic solvent is a mixture of propylene carbonate, dimethyl carbonate and ethyl methyl carbonate (1:2:1 by volume), and the non-lithium salt additives are fluoroethylene carbonate and acetonitrile, The mass percentages of the two to the total mass of the electrolyte are 3% and 5%, and the lithium salt is LiPF 6 (molar concentration is 1mol / L), the boron-containing lithium salt additive is LiDFOB, and its concentration is 0.5mol / L, and the cyclic phosphazene compound is a cyclic phosphazene derivative represented by the following chemical formula (IX):
[0049]
[0050] The cyclic phosphazene derivative accounts for 6% by mass of the total m...
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