Direct recycling of spent cathode material at ambient conditions via spontaneous lithiation
Author:
Publisher
Springer Science and Business Media LLC
Link
https://www.nature.com/articles/s41893-024-01412-9.pdf
Reference59 articles.
1. Harper, G. et al. Recycling lithium-ion batteries from electric vehicles. Nature 575, 75–86 (2019).
2. Wu, X., Ji, G., Wang, J., Zhou, G. & Liang, Z. Towards sustainable all solid‐state Li‐metal batteries: perspectives on battery technology and recycling processes. Adv. Mater. 35, 2301540 (2023).
3. Gao, H., Tran, D. & Chen, Z. Seeking direct cathode regeneration for more efficient lithium-ion battery recycling. Curr. Opin. Electrochem. 31, 100875 (2022).
4. Wu, J. et al. Direct recovery: a sustainable recycling technology for spent lithium-ion battery. Energy Storage Mater. 54, 120–134 (2023).
5. Fan, E. et al. Sustainable recycling technology for Li-ion batteries and beyond: challenges and future prospects. Chem. Rev. 120, 7020–7063 (2020).
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