Rb-doped concentration gradient ternary cathode material and preparation method thereof
A cathode material and doping concentration technology, which is applied in the field of rubidium doped concentration gradient ternary cathode material and its preparation, can solve the problems of poor high-power discharge and charge performance, difficulty in meeting the development needs of new energy vehicles, and low capacity. Achieve the effects of high tap density, high yield and improved electrochemical performance
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2019-10-29
- Estimated Expiration
- Not applicable · inactive patent
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Abstract
Description
technical field
[0001] The invention belongs to the technical field of cathode materials for lithium ion batteries, and in particular relates to a rubidium-doped concentration gradient ternary cathode material and a preparation method thereof. Background technique
[0002] Lithium-ion batteries are more and more widely used in electric vehicles (EV) due to their advantages of high working voltage, high specific energy, light weight, small size, long cycle life, no memory effect, fast charging and discharging, and low environmental pollution. And hybrid electric vehicle (HEV), is currently the most attention-grabbing way of energy storage. LiNi 1-x-y co x mn y o 2 Ternary materials are layered materials composed of three transition metal elements, nickel, cobalt, and manganese, referred to as ternary materials or NCM materials. Because of their low cost and high energy density, they are considered to be the most potential for development. Lithium-ion battery cathode mate...
Examples
Embodiment 1
[0030] A rubidium-doped concentration gradient ternary cathode material whose chemical expression is Li 1-x Rb x Ni 1-a-b co a mn b o 2 , where x is 0.05, 0.1≤a≤0.2, 0.1≤b≤0.3, 0.5≤1-a-b≤0.8.
[0031] The preparation method of the above rubidium-doped concentration gradient ternary cathode material, the specific steps are as follows:
[0032] (1) Synthesize the precursor of nickel-cobalt-manganese ternary cathode material with concentration gradient;
[0033] ① Weigh a certain mass of Ni (NO 3 ) 2 , Co(NO 3 ) 2 , Mn(NO 3 ) 2, dissolved in deionized water so that the total metal concentration is 5mol / L, the former is recorded as high nickel content nickel cobalt manganese solution, the latter is recorded as low nickel content nickel cobalt manganese solution, low nickel content nickel cobalt manganese solution and high nickel content The volume ratio of the nickel-cobalt-manganese solution and the bottom solution is 1:5:3; a sodium hydroxide solution with a concentr...
Embodiment 2
[0045] A method for preparing a rubidium-doped concentration gradient ternary cathode material, the specific steps are as follows:
[0046] (1) Synthesize the precursor of nickel-cobalt-manganese ternary cathode material with concentration gradient;
[0047] ①Weigh a certain mass of NiCl according to the molar ratio of Ni:Co:Mn=8:1:1 and 5:2:3 2 , CoCl 2 , MnCl 2 , dissolved in deionized water so that the total metal concentration is 1mol / L, the former is recorded as high nickel content nickel cobalt manganese solution, the latter is recorded as low nickel content nickel cobalt manganese solution, low nickel content nickel cobalt manganese solution and high nickel The volume ratio of the nickel-cobalt-manganese solution and the bottom solution is 1:1:1; a sodium hydroxide solution with a concentration of 0.15mol / L is also prepared;
[0048] ②Use a peristaltic pump to inject the low-nickel-content nickel-cobalt-manganese solution into the high-nickel-content nickel-cobalt-ma...
Embodiment 3
[0055] A method for preparing a rubidium-doped concentration gradient ternary cathode material, the specific steps are as follows:
[0056] (1) Synthesize the precursor of nickel-cobalt-manganese ternary cathode material with concentration gradient;
[0057] ① Weigh a certain mass of Ni(CH 3 COO) 2 , Co(CH 3 COO) 2 , Mn(CH 3 COO) 2 , dissolved in deionized water, so that the total metal concentration is 10mol / L, the former is recorded as high nickel content nickel cobalt manganese solution, the latter is recorded as low nickel content nickel cobalt manganese solution, low nickel content nickel cobalt manganese solution and high nickel content The volume ratio of the nickel content nickel cobalt manganese solution and the bottom solution is 1:9:5; another sodium hydroxide solution with a concentration of 0.5mol / L is prepared;
[0058] ②Use a peristaltic pump to inject the low-nickel-content nickel-cobalt-manganese solution into the high-nickel-content nickel-cobalt-mangan...