Titanium-modified lithium-rich oxide cathode material as well as preparation method and application thereof
A cathode material and oxide technology, which is applied in the field of titanium-modified lithium-rich oxide cathode material and its preparation, can solve the problems of fast capacity decay, and achieve the effects of slow capacity decay, great commercialization prospects, and simple synthesis process.
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Embodiment 1
[0027] An embodiment of the titanium-modified lithium-rich oxide cathode material of the present invention, the chemical formula of the titanium-modified lithium-rich oxide cathode material is 0.2Li 2 MnO 3 -0.8LiMn 0.5 Ni 0.45 Ti 0.05 o 2 , the preparation method of the titanium-modified lithium-rich oxide cathode material comprises the following steps:
[0028] (1) 0.96g transition metal carbonate microsphere precursor (Mn 0.75 Ni 0.25 CO 3 ) and 1.4414g of urea, add 18μL tetrabutyl titanate, add 40ml of absolute ethanol, put it into a 100ml reactor and stir thoroughly, heat-treat in an oven at 150°C for 12h, cool in the furnace, and filter to obtain a powder;
[0029] (2) Add 0.4655g Lithium Carbonate, 1.8701g NaCl and 3.5784g KCl to the powder obtained in step (1), and after fully grinding, react in a box furnace at 850°C for 12h to complete the heat treatment, and cool with the furnace; The final sample was washed and dried to obtain 0.2Li 2 MnO 3 -0.8LiMn 0.5 ...
Embodiment 2
[0033] An embodiment of the titanium-modified lithium-rich oxide cathode material of the present invention, the chemical formula of the titanium-modified lithium-rich oxide cathode material is 0.2Li 2 MnO 3 -0.8LiMn 0.5 Ni 0.45 Ti 0.05 o 2 , the preparation method of the titanium-modified lithium-rich oxide cathode material comprises the following steps:
[0034] (1) 0.96g transition metal carbonate microsphere precursor (Mn 0.75 Ni 0.25 CO 3 ) and 1.4414g of urea, add 18μL of tetraethyl titanate, add 40ml of absolute ethanol, put it into a 100ml reactor and stir thoroughly, then heat-treat in an oven at 100°C for 12h, cool in the furnace, and filter to obtain a powder;
[0035] (2) Add 0.4655g Lithium Carbonate, 1.8701g NaCl and 3.5784g KCl to the powder obtained in step (1), and after fully grinding, react in a box furnace at 850°C for 12h to complete the heat treatment, and cool with the furnace; The final sample was washed and dried to obtain 0.2Li 2 MnO 3 -0.8Li...
Embodiment 3
[0038] An embodiment of the titanium-modified lithium-rich oxide cathode material of the present invention, the chemical formula of the titanium-modified lithium-rich oxide cathode material is 0.2Li 2 MnO 3 -0.8LiMn 0.5 Ni 0.45 Ti 0.05 o 2 , the preparation method of the titanium-modified lithium-rich oxide cathode material comprises the following steps:
[0039] (1) 0.96g transition metal carbonate microsphere precursor (Mn 0.75 Ni 0.25 CO 3 ) and 1.4414g of urea, add 18μL of tetraisopropyl titanate, add 40ml of absolute ethanol, put it into a 100ml reaction kettle and stir thoroughly, then heat-treat in an oven at 180°C for 12h, cool in the furnace, and filter to obtain a powder ;
[0040] (2) Add 0.4655g Lithium Carbonate, 1.8701g NaCl and 3.5784g KCl to the powder obtained in step (1), and after fully grinding, react in a box furnace at 850°C for 12h to complete the heat treatment, and cool with the furnace; The final sample was washed and dried to obtain 0.2Li 2...
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