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Layered transition metal oxide cathodes for sodium-ion batteries: Challenges, progress, and perspectives. / Liu, Jiaxuan; Zhang, Nan; Shi, Huiming; He, Zhipeng; Zhang, Zhiyu; Anishchenko, Dmitrii V.; Alekseeva, Elena V.; Li, Ruopeng; Yang, Peixia; Levin, Oleg V.; Wang, Dianlong; Liu, Huakun; Dou, Shixue; Wang, Bo.

In: Chemical Engineering Journal, Vol. 521, 167111, 01.10.2025.

Research output: Contribution to journalArticlepeer-review

Harvard

Liu, J, Zhang, N, Shi, H, He, Z, Zhang, Z, Anishchenko, DV, Alekseeva, EV, Li, R, Yang, P, Levin, OV, Wang, D, Liu, H, Dou, S & Wang, B 2025, 'Layered transition metal oxide cathodes for sodium-ion batteries: Challenges, progress, and perspectives', Chemical Engineering Journal, vol. 521, 167111. https://doi.org/10.1016/j.cej.2025.167111

APA

Liu, J., Zhang, N., Shi, H., He, Z., Zhang, Z., Anishchenko, D. V., Alekseeva, E. V., Li, R., Yang, P., Levin, O. V., Wang, D., Liu, H., Dou, S., & Wang, B. (2025). Layered transition metal oxide cathodes for sodium-ion batteries: Challenges, progress, and perspectives. Chemical Engineering Journal, 521, [167111]. https://doi.org/10.1016/j.cej.2025.167111

Vancouver

Author

Liu, Jiaxuan ; Zhang, Nan ; Shi, Huiming ; He, Zhipeng ; Zhang, Zhiyu ; Anishchenko, Dmitrii V. ; Alekseeva, Elena V. ; Li, Ruopeng ; Yang, Peixia ; Levin, Oleg V. ; Wang, Dianlong ; Liu, Huakun ; Dou, Shixue ; Wang, Bo. / Layered transition metal oxide cathodes for sodium-ion batteries: Challenges, progress, and perspectives. In: Chemical Engineering Journal. 2025 ; Vol. 521.

BibTeX

@article{8c6b4ebace88440eb98d6d664ef175ed,
title = "Layered transition metal oxide cathodes for sodium-ion batteries: Challenges, progress, and perspectives",
abstract = "Sodium-ion batteries (SIBs) are considered strong competitors to lithium-ion batteries (LIBs) due to their low cost and safety advantages. Layered transition metal oxides (LTMOs), characterized by simple synthesis and high specific capacity, are regarded as the most promising cathode materials for SIBs. However, structural limitations of LTMOs, such as irreversible phase transitions, Jahn-Teller effects, TM ions migration, interfacial side reactions, reactive oxygen loss, and air instability, hinder their commercialization. This review systematically describes these challenges affecting structural stability and electrochemical performance, summarizes recent advancements in modification strategies, and outlines future directions for LTMOs development. By comprehensively analyzing LTMOs, this work aims to provide theoretical insights to facilitate the large-scale commercial application of SIBs.",
keywords = "Cathode, Challenges, Layered transition metal oxides, Modification strategies, Sodium-ion batteries",
author = "Jiaxuan Liu and Nan Zhang and Huiming Shi and Zhipeng He and Zhiyu Zhang and Anishchenko, {Dmitrii V.} and Alekseeva, {Elena V.} and Ruopeng Li and Peixia Yang and Levin, {Oleg V.} and Dianlong Wang and Huakun Liu and Shixue Dou and Bo Wang",
year = "2025",
month = oct,
day = "1",
doi = "10.1016/j.cej.2025.167111",
language = "English",
volume = "521",
journal = "Chemical Engineering Journal",
issn = "1385-8947",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Layered transition metal oxide cathodes for sodium-ion batteries: Challenges, progress, and perspectives

AU - Liu, Jiaxuan

AU - Zhang, Nan

AU - Shi, Huiming

AU - He, Zhipeng

AU - Zhang, Zhiyu

AU - Anishchenko, Dmitrii V.

AU - Alekseeva, Elena V.

AU - Li, Ruopeng

AU - Yang, Peixia

AU - Levin, Oleg V.

AU - Wang, Dianlong

AU - Liu, Huakun

AU - Dou, Shixue

AU - Wang, Bo

PY - 2025/10/1

Y1 - 2025/10/1

N2 - Sodium-ion batteries (SIBs) are considered strong competitors to lithium-ion batteries (LIBs) due to their low cost and safety advantages. Layered transition metal oxides (LTMOs), characterized by simple synthesis and high specific capacity, are regarded as the most promising cathode materials for SIBs. However, structural limitations of LTMOs, such as irreversible phase transitions, Jahn-Teller effects, TM ions migration, interfacial side reactions, reactive oxygen loss, and air instability, hinder their commercialization. This review systematically describes these challenges affecting structural stability and electrochemical performance, summarizes recent advancements in modification strategies, and outlines future directions for LTMOs development. By comprehensively analyzing LTMOs, this work aims to provide theoretical insights to facilitate the large-scale commercial application of SIBs.

AB - Sodium-ion batteries (SIBs) are considered strong competitors to lithium-ion batteries (LIBs) due to their low cost and safety advantages. Layered transition metal oxides (LTMOs), characterized by simple synthesis and high specific capacity, are regarded as the most promising cathode materials for SIBs. However, structural limitations of LTMOs, such as irreversible phase transitions, Jahn-Teller effects, TM ions migration, interfacial side reactions, reactive oxygen loss, and air instability, hinder their commercialization. This review systematically describes these challenges affecting structural stability and electrochemical performance, summarizes recent advancements in modification strategies, and outlines future directions for LTMOs development. By comprehensively analyzing LTMOs, this work aims to provide theoretical insights to facilitate the large-scale commercial application of SIBs.

KW - Cathode

KW - Challenges

KW - Layered transition metal oxides

KW - Modification strategies

KW - Sodium-ion batteries

UR - https://www.mendeley.com/catalogue/3b8fac16-de31-35c2-b899-d4e8a3e664f4/

U2 - 10.1016/j.cej.2025.167111

DO - 10.1016/j.cej.2025.167111

M3 - Article

VL - 521

JO - Chemical Engineering Journal

JF - Chemical Engineering Journal

SN - 1385-8947

M1 - 167111

ER -

ID: 139802275