Modulating NCM622 electrode to efficiently boost the lithium storage and thermal safety of its full batteries
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference76 articles.
1. Accelerated degradation in a quasi-single-crystalline layered oxide cathode for lithium-ion batteries caused by residual grain boundaries;Zhang;Nano Lett.,2022
2. Polycrystalline and single crystalline NCM cathode materials-quantifying particle cracking, active surface area, and lithium diffusion;Trevisanello;Adv. Energy Mater.,2021
3. Challenges and strategies towards single-crystalline Ni-rich layered cathodes;Ni;Adv. Energy Mater.,2022
4. Pulse high temperature sintering to prepare single-crystal high nickel oxide cathodes with enhanced electrochemical performance;Huang;Adv. Energy Mater.,2023
5. In situ surface engineering enables high interface stability and rapid reaction kinetics for Ni-rich cathodes;Guo;eScience,2023
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