Quaternary positive electrode material and preparation method and application thereof
A technology of positive electrode materials and positive electrode sheets, which is applied in the field of quaternary positive electrode materials and its preparation, can solve the problems of unspecified electrochemical properties of positive electrode materials, poor cycle performance of high-nickel quaternary positive electrode materials, and high requirements for hydrothermal reaction conditions, etc. problems, to achieve the effect of excellent capacity, short cycle time and easy synthesis
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Embodiment 1
[0041] This embodiment provides a quaternary positive electrode material, and the preparation method of the quaternary positive electrode material is as follows:
[0042] (1) Mix nickel-cobalt-manganese-aluminum hydroxide (molar ratio: Ni:Co:Mn:Al=90:7:2:1) and LiOH according to the transition metal: Li molar ratio of 1:1.025, and then add nickel 0.3% Nb by mass of cobalt manganese aluminum hydroxide 2 o 5 and 0.1% B by mass of nickel cobalt manganese aluminum hydroxide 2 o 3 , dry mixed in a mixer, calcined the dry mixed material in an ordinary box furnace at 700°C in an oxygen atmosphere for 8 hours, cooled, crushed and sieved to obtain a boron / niobium-doped quaternary positive electrode material;
[0043](2) Mix the obtained boron / niobium-doped quaternary positive electrode material with distilled water at a ratio of 1:1, stir at 300rpm for 10min, place it in a vacuum oven at 150°C for 10h, take it out after drying, and add the dried boron / niobium 0.1% boric acid of the...
Embodiment 2
[0046] This embodiment provides a quaternary positive electrode material, and the preparation method of the quaternary positive electrode material is as follows:
[0047] (1) Mix nickel-cobalt-manganese-aluminum hydroxide (molar ratio: Ni:Co:Mn:Al=95:2:2:1) and LiOH according to the transition metal: Li molar ratio of 1:1.15, and then add nickel 0.4% Nb by mass of cobalt manganese aluminum hydroxide 2 o 5 and 0.2% B by mass of nickel cobalt manganese aluminum hydroxide 2 o 3 , dry-mixed in a mixer, calcined the dry-mixed material in an ordinary box furnace at 750°C in an oxygen atmosphere for 9 hours, cooled, pulverized and sieved to obtain a boron / niobium-doped quaternary positive electrode material;
[0048] (2) Mix the obtained boron / niobium-doped quaternary cathode material with distilled water at a ratio of 1:1, stir at 350rpm for 12min, place it in a vacuum oven at 180°C for 18h, take it out after drying, and add the dried boron / niobium 0.2% boric acid of the mass of...
Embodiment 3
[0050] The only difference between this embodiment and embodiment 1 is that the Nb described in step (1) 2 o 5 The doping amount is 0.2%, and other conditions and parameters are exactly the same as in Example 1.
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