The significance of mitigating crosstalk in lithium-ion batteries: a review

Y Song, L Wang, L Sheng, D Ren, H Liang… - Energy & …, 2023 - pubs.rsc.org
High-energy lithium-ion batteries are being increasingly applied in the electric vehicle
industry but suffer from rapid capacity fading and a high risk of thermal runaway. The …

Oxide cathodes: functions, instabilities, self healing, and degradation mitigations

Y Dong, J Li - Chemical Reviews, 2022 - ACS Publications
Recent progress in high-energy-density oxide cathodes for lithium-ion batteries has pushed
the limits of lithium usage and accessible redox couples. It often invokes hybrid anion-and …

Origin of structural degradation in Li-rich layered oxide cathode

T Liu, J Liu, L Li, L Yu, J Diao, T Zhou, S Li, A Dai… - Nature, 2022 - nature.com
Li-and Mn-rich (LMR) cathode materials that utilize both cation and anion redox can yield
substantial increases in battery energy density,–. However, although voltage decay issues …

A Li-rich layered oxide cathode with negligible voltage decay

D Luo, H Zhu, Y **a, Z Yin, Y Qin, T Li, Q Zhang, L Gu… - Nature Energy, 2023 - nature.com
With high capacity at low cost, Li-and Mn-rich (LMR) layered oxides are a promising class of
cathodes for next-generation Li-ion batteries. However, substantial voltage decay during …

Pushing the limit of 3d transition metal-based layered oxides that use both cation and anion redox for energy storage

M Zhang, DA Kitchaev, Z Lebens-Higgins… - Nature Reviews …, 2022 - nature.com
Intercalation chemistry has dominated electrochemical energy storage for decades, and
storage capacity worldwide has now reached the terawatt-hour level. State-of-the-art …

High‐entropy and superstructure‐stabilized layered oxide cathodes for sodium‐ion batteries

L Yao, P Zou, C Wang, J Jiang, L Ma… - Advanced Energy …, 2022 - Wiley Online Library
Layered transition metal oxides are appealing cathodes for sodium‐ion batteries due to their
overall advantages in energy density and cost. But their stabilities are usually compromised …

Improving the oxygen redox reversibility of Li-rich battery cathode materials via Coulombic repulsive interactions strategy

Q Li, D Ning, D Wong, K An, Y Tang, D Zhou… - Nature …, 2022 - nature.com
The oxygen redox reaction in lithium-rich layered oxide battery cathode materials generates
extra capacity at high cell voltages (ie,> 4.5 V). However, the irreversible oxygen release …

Molecular engineering of covalent organic framework cathodes for enhanced zinc‐ion batteries

W Wang, VS Kale, Z Cao, Y Lei… - Advanced …, 2021 - Wiley Online Library
Covalent organic frameworks (COFs) are potentially promising electrode materials for
electrochemical charge storage applications thanks to their pre‐designable reticular …

The role of O2 in O-redox cathodes for Li-ion batteries

RA House, JJ Marie, MA Pérez-Osorio, GJ Rees… - Nature Energy, 2021 - nature.com
The energy density of Li-ion batteries can be improved by storing charge at high voltages
through the oxidation of oxide ions in the cathode material. However, oxidation of O2 …

Inhibiting collective cation migration in Li-rich cathode materials as a strategy to mitigate voltage hysteresis

J Huang, B Ouyang, Y Zhang, L Yin, DH Kwon, Z Cai… - Nature Materials, 2023 - nature.com
Lithium-rich cathodes are promising energy storage materials due to their high energy
densities. However, voltage hysteresis, which is generally associated with transition metal …