Ti-doped nickel-cobalt-aluminum ternary lithium ion battery positive pole material and preparation method and use thereof
A technology for lithium ion batteries and cathode materials, which is applied in battery electrodes, secondary batteries, circuits, etc., can solve the problems of reducing material cycle stability, reducing coating effect, increasing battery impedance, etc., to improve electrochemical performance, improve Coating effect, effect of reducing impedance
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
preparation example Construction
[0040] The preparation method of the Ti-doped nickel-cobalt-aluminum ternary lithium-ion battery positive electrode material of the embodiment of the present invention comprises the following steps:
[0041] Step (1), the first sintering: the ternary cathode material precursor Ni 1-x-y co x al y (OH) 2+y Sintering; sintering time 6-20 hours, sintering temperature 200-1000 ℃;
[0042] Step (2), the second sintering: add the sintered product of the step (1) to the lithium source and the dopant material to mix and grind according to a certain ratio, after the grinding is uniform, sinter in air or oxygen atmosphere, after the sintering is completed, Cool down to room temperature at a cooling rate of 0.01-2.5°C / min;
[0043] Step (3), the third sintering: sintering the sintered product of the step (2), the sintering time is 1-12 hours, and the sintering temperature is 500-1000°C to obtain a Ti-doped nickel-cobalt-aluminum ternary lithium-ion battery Cathode material (Li a Ni ...
Embodiment 1
[0050] What embodiment 1 provides is Ti-doped nickel-cobalt-aluminum ternary lithium-ion battery cathode material (Li 1.035 Ni 0.815 co 0.15 al 0.035 ) 0.9993 Ti 0.0007 o 2 , x=0.15, y=0.035, a=1.035, b=0.0007. The Ti-doped nickel-cobalt-aluminum ternary lithium-ion battery cathode material (Li 1.035 Ni 0.815 co 0.15 al 0.035 ) 0.9993 Ti 0.0007 o 2 The preparation method comprises the following steps:
[0051] Step (1), the first sintering: the ternary cathode material precursor Ni 1-x-y co x al y (OH) 2+y Sintering, heating up to 500°C for 10 hours;
[0052] Step (2), the second sintering: After drying lithium hydroxide monohydrate until the crystal water is completely lost, sinter the resultant and the doping material TiO with the step (1) 2 Mixed grinding, the amount of lithium hydroxide monohydrate is 1.035:1 in the molar ratio of Li in lithium hydroxide monohydrate to (Ni+Co+Al) in the precursor of the ternary positive electrode material, TiO 2 The amou...
Embodiment 2
[0056] What embodiment 2 provides is Ti-doped nickel-cobalt-aluminum ternary lithium-ion battery cathode material (Li 1.035 Ni 0.815 co 0.15 al 0.035 ) 0.9981 Ti 0.0019 o 2 , x=0.15, y=0.035, a=1.035, b=0.0019. The Ti-doped nickel-cobalt-aluminum ternary lithium-ion battery cathode material (Li 1.035 Ni 0.815 co 0.15 al 0.035 ) 0.9981 Ti 0.0019 o 2 The preparation method comprises the following steps:
[0057] Step (1), the first sintering: the ternary cathode material precursor Ni 1-x-y co x al y (OH) 2+y Sintering, heating up to 600°C for 6.5 hours;
[0058] Step (2), the second sintering: After drying lithium hydroxide monohydrate until the crystal water is completely lost, sinter the resultant and the doping material TiO with the step (1) 2 Mixed grinding, the amount of lithium hydroxide monohydrate is 1.035:1 in the molar ratio of Li in lithium hydroxide monohydrate to (Ni+Co+Al) in the precursor of the ternary positive electrode material, TiO 2 The amo...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com