A comprehensive review of emerging technologies for recycling spent lithium-ion batteries

YE Milian, N Jamett, C Cruz, S Herrera-León… - Science of The Total …, 2024 - Elsevier
Along with the increasing demand for lithium-ion batteries (LIB), the need for recycling major
components such as graphite and different critical materials contained in LIB is also …

The foreseeable future of spent lithium-ion batteries: Advanced upcycling for toxic electrolyte, cathode, and anode from environmental and technological perspectives

L Zhang, Y Zhang, Z Xu, P Zhu - Environmental Science & …, 2023 - ACS Publications
With the rise of the new energy vehicle industry represented by Tesla and BYD, the need for
lithium-ion batteries (LIBs) grows rapidly. However, owing to the limited service life of LIBs …

Self-powered recycling of spent lithium iron phosphate batteries via triboelectric nanogenerator

B Zhang, L He, J Wang, Y Liu, X Xue, S He… - Energy & …, 2023 - pubs.rsc.org
The recycling of lithium iron phosphate batteries (LFPs), which represent more than 32% of
the worldwide lithium-ion battery (LIB) market share, has raised attention owing to the …

Self‐Reconstruction of Highly Degraded LiNi0.8Co0.1Mn0.1O2 toward Stable Single‐Crystalline Cathode

Z Qin, T Zhang, X Gao, W Luo, J Han, B Lu… - Advanced …, 2024 - Wiley Online Library
The ever‐growing demand for resources sustainability has promoted the recycle of spent
lithium‐ion batteries to a strategic position. Direct recycle outperforms either …

Pathway decisions for reuse and recycling of retired lithium-ion batteries considering economic and environmental functions

R Ma, S Tao, X Sun, Y Ren, C Sun, G Ji, J Xu… - Nature …, 2024 - nature.com
Reuse and recycling of retired electric vehicle (EV) batteries offer a sustainable waste
management approach but face decision-making challenges. Based on the process-based …

Hydrophobic Hyamine‐Mediated Water‐Lean Electric Double Layer Boosting Reversible Dendrite‐Free Zinc Metal Anodes

S Cai, J Hu, Y Luo, P Zhu, T He, G Zou… - Advanced Functional …, 2024 - Wiley Online Library
Aqueous zinc‐ion batteries (ZIBs) are promising candidates for grid‐energy storage due to
their safety and cost‐effectiveness. However, the detrimental hydrogen evolution reaction …

Solvothermal strategy for direct regeneration of high-performance cathode materials from spent lithium-ion battery

J Zhou, X Zhou, W Yu, Z Shang, Y Yang, S Xu - Nano Energy, 2024 - Elsevier
Direct regeneration of cathode materials from spent lithium-ion batteries is efficient but
suffers from the difficulty of accurately replenishing lithium, leading to poor performance of …

Homogenization and Upcycling of Hetero Spent LiCoO2 Cathodes: Rational Introduction of Li/Co Anti‐Sites Toward Enhanced High‐Voltage Stability

H Lei, Z Zeng, J Li, X Cui, B Wang, Y Shi… - Advanced Functional …, 2024 - Wiley Online Library
Captured by relatively low energy consumption and harmful gas‐emission, direct
regeneration has captured numerous attention, but still suffers from different particle sizes …

Fruit waste-derived lixiviant: a viable green chemical for lithium-ion battery recycling

MP Do, HK Lim, CK Tan, EJJ Tang, M Srinivasan… - Journal of Cleaner …, 2023 - Elsevier
Fruit peel discards from various sources are harnessed as a renewable waste biomass
feedstock for lithium-ion battery (LIB) recycling, showcasing the potential for green chemical …

Direct Regenerating Cathode Materials from Spent Lithium‐Ion Batteries

Y Lan, X Li, G Zhou, W Yao, HM Cheng… - Advanced …, 2024 - Wiley Online Library
Recycling cathode materials from spent lithium‐ion batteries (LIBs) is critical to a sustainable
society as it will relief valuable but scarce recourse crises and reduce environment burdens …