Toward direct regeneration of spent lithium-ion batteries: a next-generation recycling method

J Wang, J Ma, Z Zhuang, Z Liang, K Jia, G Ji… - Chemical …, 2024 - ACS Publications
The popularity of portable electronic devices and electric vehicles has led to the drastically
increasing consumption of lithium-ion batteries recently, raising concerns about the disposal …

Fundamentals, status and challenges of direct recycling technologies for lithium ion batteries

H Ji, J Wang, J Ma, HM Cheng, G Zhou - Chemical Society Reviews, 2023 - pubs.rsc.org
Advancement in energy storage technologies is closely related to social development.
However, a significant conflict has arisen between the explosive growth in battery demand …

Suppressing strain propagation in ultrahigh-Ni cathodes during fast charging via epitaxial entropy-assisted coating

C Zhao, C Wang, X Liu, I Hwang, T Li, X Zhou, J Diao… - Nature Energy, 2024 - nature.com
Surface reconstruction and the associated severe strain propagation have long been
reported as the major cause of cathode failure during fast charging and long-term cycling …

A Li-rich layered oxide cathode with negligible voltage decay

D Luo, H Zhu, Y **-derived surface lattice modulation of high-voltage Ni-rich layered cathodes for high-energy-density Li-ion batteries
F Li, Z Liu, C Liao, X Xu, M Zhu, J Liu - ACS Energy Letters, 2023 - ACS Publications
The utilization of high-voltage Ni-rich cathodes can cost-effectively push lithium-ion batteries
toward higher energy density but suffers from major challenges with severe structural and …

Oxygen vacancy chemistry in oxide cathodes

YH Zhang, S Zhang, N Hu, Y Liu, J Ma, P Han… - Chemical Society …, 2024 - pubs.rsc.org
Secondary batteries are a core technology for clean energy storage and conversion
systems, to reduce environmental pollution and alleviate the energy crisis. Oxide cathodes …