Preparation method, product, and applications of aluminum oxide-coated lithium cobalt oxide material
A technology for coating lithium cobalt oxide and alumina, applied in electrode manufacturing, electrochemical generators, electrical components, etc., can solve the problems of battery safety threats, oxidative enhancement, side reactions, etc., and achieve significant performance and cost advantages , Outstanding high pressure performance, good structure effect
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Embodiment 1
[0030] The preparation method of the aluminum oxide-coated lithium cobalt oxide material provided in this embodiment includes the following steps:
[0031] (1) The lithium cobaltate powder is preloaded in the mixer, and after the charging is completed, the mixer is vacuumized, and when the preset vacuum degree is reached, the vacuuming is stopped and the mixer is started;
[0032] (2) Mix alumina powder and carbon powder with a molar ratio of 1:0.5~2 evenly, press it into a billet after mixing evenly, and place the pressed billet in a vacuum furnace connected to the mixer In the process, vacuumize the vacuum furnace after filling the material, wherein the vacuum furnace and the mixer are connected through pipelines;
[0033] (3) the vacuum furnace described in step (2) is heated up, and the reaction of alumina powder and carbon powder begins to generate gaseous alumina;
[0034] (4) Import the gaseous aluminum oxide described in step (3) into the mixer and stir to block the p...
Embodiment 2
[0046] The preparation method and application of the aluminum oxide-coated lithium cobalt oxide material provided in this example, its raw material components and steps are basically the same as those in Example 1, the difference lies in:
[0047] (1) Place 2Kg lithium cobalt oxide at 0.1m 3 In the V-shaped stainless steel mixer, vacuumize to 10 -1 Pa.
[0048] (2) Mix alumina powder and graphite powder uniformly at a molar ratio of 1:2 and press them into a compact with a mass of 1Kg.
[0049] (3) The block is placed in a volume of 0.1m 3 In the vacuum furnace, the vacuum is evacuated to 10 -2 Pa, heat up to 1150°C and keep warm.
[0050] (4) After the vacuum furnace is kept warm for 10 hours, open the stop valve between the vacuum furnace and the mixer, start the V-type mixer, and the speed of the mixer is 60r / min.
[0051] (5) After mixing for 10 hours, close the stop valve, open the air inlet of the mixer, and put in air.
[0052](6) After continuing to mix for 10 ho...
Embodiment 3
[0055] The preparation method and application of the aluminum oxide-coated lithium cobaltate material provided in this example, its raw material components and steps are basically the same as those in Examples 1 and 2, the difference is that:
[0056] (1) Place 2Kg lithium cobalt oxide at 0.1m 3 In the V-shaped stainless steel mixer, vacuumize to 10 -4 Pa.
[0057] (2) Mix alumina powder and activated carbon powder uniformly in a molar ratio of 1:2, and then press it into a compact with a mass of 1Kg.
[0058] (3) Place the block in a volume of 0.1m 3 In the vacuum furnace, the vacuum is evacuated to 10 -2 Pa, heat up to 1200°C and keep warm.
[0059] (4) After the vacuum furnace is kept warm for 1 hour, open the stop valve between the vacuum furnace and the mixer, start the V-shaped mixer, and the speed of the mixer is 90r / min.
[0060] (5) After mixing for 5 hours, close the stop valve, open the air inlet of the mixer, and put in air.
[0061] (6) After continuing to m...
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