Layered oxide cathodes for sodium-ion batteries: storage mechanism, electrochemistry, and techno-economics

W Zuo, A Innocenti, M Zarrabeitia… - Accounts of Chemical …, 2023 - ACS Publications
Conspectus Lithium-ion batteries (LIBs) are ubiquitous in all modern portable electronic
devices such as mobile phones and laptops as well as for powering hybrid electric vehicles …

Recent progress in the emerging modification strategies for layered oxide cathodes toward practicable sodium ion batteries

B Peng, G Wan, N Ahmad, L Yu, X Ma… - Advanced Energy …, 2023 - Wiley Online Library
Low‐cost sodium‐ion batteries (SIBs) have been extensively considered as a supplement or
even a replacement for successful lithium‐ion batteries. However, the practical application of …

Mitigating the large‐volume phase transition of P2‐type cathodes by synergetic effect of multiple ions for improved sodium‐ion batteries

Z Cheng, B Zhao, YJ Guo, L Yu, B Yuan… - Advanced Energy …, 2022 - Wiley Online Library
Layered transition metal oxide P2‐Na2/3Ni1/3Mn2/3O2 usually suffers from large‐volume
phase transitions and different Na‐vacancy ordering during sodium (de) intercalation …

Rational design of layered oxide materials for sodium-ion batteries

C Zhao, Q Wang, Z Yao, J Wang, B Sánchez-Lengeling… - Science, 2020 - science.org
Sodium-ion batteries have captured widespread attention for grid-scale energy storage
owing to the natural abundance of sodium. The performance of such batteries is limited by …

Engineering Na+-layer spacings to stabilize Mn-based layered cathodes for sodium-ion batteries

W Zuo, X Liu, J Qiu, D Zhang, Z Xiao, J Xie… - Nature …, 2021 - nature.com
Layered transition metal oxides are the most important cathode materials for Li/Na/K ion
batteries. Suppressing undesirable phase transformations during charge-discharge …

Li-rich cathodes for rechargeable Li-based batteries: reaction mechanisms and advanced characterization techniques

W Zuo, M Luo, X Liu, J Wu, H Liu, J Li… - Energy & …, 2020 - pubs.rsc.org
Due to their high specific capacities beyond 250 mA hg− 1, lithium-rich oxides have been
considered as promising cathodes for the next generation power batteries, bridging the …

The stability of P2-layered sodium transition metal oxides in ambient atmospheres

W Zuo, J Qiu, X Liu, F Ren, H Liu, H He, C Luo… - Nature …, 2020 - nature.com
Air-stability is one of the most important considerations for the practical application of
electrode materials in energy-harvesting/storage devices, ranging from solar cells to …

Unusual site‐selective doping in layered cathode strengthens electrostatic cohesion of alkali‐metal layer for practicable sodium‐ion full cell

B Peng, Y Chen, F Wang, Z Sun, L Zhao… - Advanced …, 2022 - Wiley Online Library
Abstract P2‐type Na0. 67Ni0. 33Mn0. 67O2 is a dominant cathode material for sodium‐ion
batteries due to its high theoretical capacity and energy density. However, charging P2‐type …

Oxide cathodes for sodium‐ion batteries: designs, challenges, and perspectives

T Chen, B Ouyang, X Fan, W Zhou, W Liu… - Carbon Energy, 2022 - Wiley Online Library
Abstract Sodium‐ion batteries (SIBs), which are an alternative to lithium‐ion batteries (LIBs),
have attracted increasing attention due to their low cost of Na resources and similar Na …

[HTML][HTML] Precipitate-stabilized surface enabling high-performance Na0. 67Ni0. 33-xMn0. 67ZnxO2 for sodium-ion battery

K Wang, Z Zhang, S Cheng, X Han, J Fu, M Sui, P Yan - eScience, 2022 - Elsevier
Electrode interfacial degradations are the key challenges for high-performance
rechargeable batteries, usually mitigated through surface modification/coating strategies …