Modification method of lithium ion battery positive electrode material
A cathode material, lithium-ion technology, which is applied in the field of preparation of cathode materials for lithium-ion batteries, can solve problems such as cycle instability and poor high-temperature performance, and achieve the effect of good coating uniformity, good consistency, and controllable coating thickness
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Embodiment 1
[0026] Titanium oxide-coated lithium manganate material: put the prepared lithium manganate body material into a vacuum chamber, and evacuate to a vacuum degree of 3×10 -4 Pa, heated to 100°C, bombarded metal titanium (purity 99.9%) with high-speed particles, firstly introduced argon gas into the vacuum chamber with a flow rate of 50 sccm, and then injected oxygen at a flow rate of 5 sccm, the whole process lasted for 5 minutes, and obtained nano-titanium oxide Coated lithium manganese oxide material (such as figure 2 shown). The thickness of the cladding material is 1-3nm.
Embodiment 2
[0028] The whole process of feeding oxygen lasts for 10 minutes, so as to control the thickness of the cladding material to be 8-10 nm, and the others are the same as in Example 1.
Embodiment 3
[0030] Zinc oxide-coated lithium manganate material: put the prepared lithium manganate body material into a vacuum chamber, and evacuate to a vacuum degree of 2×10 -4 Pa, heated to 150°C, and bombarded metal zinc (purity 99.9%) with high-speed particles, argon gas was introduced into the vacuum chamber at a flow rate of 50 sccm, and then oxygen was injected at a flow rate of 5 sccm. The whole process lasted for 3 minutes, and the thickness of the cladding layer was controlled. The thickness is 3-5nm, and the lithium manganese oxide material coated with nano-zinc oxide is obtained.
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