Electrochemical performance and structural evolution of layered oxide cathodes materials for sodium-ion batteries: A review

被引:16
|
作者
Azambou, Christelle Ivane [1 ,2 ]
Obiukwu, Osita Obineche [1 ]
Tsobnang, Patrice Kenfack [2 ]
Kenfack, Ignas Tonle [2 ]
Kalu, Egwu Eric [1 ,3 ,4 ]
Oguzie, Emeka Emmanuel [1 ]
机构
[1] Fed Univ Technol Owerri, Africa Ctr Excellence Future Energies & Electroche, Owerri PMB 1529, Owerri, Imo, Nigeria
[2] Univ Dschang, Dept Chem, POB 67, Dschang, Cameroon
[3] Florida A&M Univ, Dept Chem & Biomed Engn, Tallahassee, FL USA
[4] Florida State Univ, Tallahassee, FL USA
关键词
Structural evolution; Cathode; Electrochemical performance; Sodium -ion batteries; HIGH-CAPACITY; HIGH-VOLTAGE; HIGH-ENERGY; CHEMISTRY; MIGRATION; ELECTRODE; NANIO2;
D O I
10.1016/j.est.2024.112506
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The current climate-focused transition from non-renewable to renewable energies has placed strong demands on renewable and sustainable energy sources. Lithium-ion batteries have been successfully commercialized in recent years. However, because of the scarcity and high costs of lithium, sodium-ion battery technologies have emerged as pragmatic alternatives for the development of more affordable, viable energy storage and conversion devices. Since the battery performance depends strongly on the properties and efficiency of the cathode material, layered transition metal oxides with immense potential for large-scale deployment, have emerged as intriguing cathode materials for sodium-ion batteries due to their simple synthesis, environmental safety, high conductivity, and high specific capacity. However, certain challenges associated with the stability and electrochemical performance of these layered oxide cathode materials have impeded the commercialization of sodium-ion battery technologies. This review attempts a comprehensive overview of advances in the electrochemical performance, stability, and structural evolution of layered oxides. The focus is on P2 and O3-type single, binary, and ternary layered oxides, cycled at low and high voltage during charge and discharge processes. Approaches to improve cathode performance, such as doping and surface modification, are also discussed for future development. Favorable anionic redox reactions, microwave-assisted methods, and high entropy oxides are also highlighted as improvement strategies. Based on the information provided in this review, layered transition metal oxides consisting of abundant, eco-friendly, low-cost, and performant elements are most suitable as cathode materials for future sodium-ion batteries.
引用
收藏
页数:25
相关论文
共 50 条
  • [31] Structural evolution and redox chemistry of robust ternary layered oxide cathode for sodium-ion batteries
    Li, Ting
    Lu, Meiling
    Zhang, Yangyang
    Xiang, Xingde
    Liu, Song
    Chen, Chunxia
    JOURNAL OF ALLOYS AND COMPOUNDS, 2024, 978
  • [32] Anionic-Based Layered Oxide Cathodes with High Electrochemical Performance through Dual-Site Substitutions for Sodium-Ion Batteries
    Thanwisai, Panya
    Yang, Songge
    Yao, Zeyi
    Meng, Zifei
    Hou, Jiahui
    Vanaphuti, Panawan
    Sultanov, Maksim
    Wen, Jianguo
    Yang, Zhenzhen
    Zhong, Yu
    Wang, Yan
    SMALL, 2025, 21 (11)
  • [33] Structural effects of the iron/manganese ratio in Li-doped layered oxide cathodes for sodium-ion batteries
    Lavela, Pedro
    Leyva, Julia
    Castaneda, Adrian
    Tirado, Jose luis
    Aranda, Manuel
    JOURNAL OF ENERGY STORAGE, 2024, 81
  • [34] Current issues and corresponding optimizing strategies of layered oxide cathodes for sodium-ion batteries
    Tan, Xiang
    Zeng, Jun
    Sun, Luyi
    Peng, Chenxi
    Li, Zheng
    Zou, Shuhao
    Shi, Qian
    Wang, Hui
    Liu, Jun
    INFOMAT, 2025,
  • [35] A comprehensive understanding of the anionic redox chemistry in layered oxide cathodes for sodium-ion batteries
    Jin, Junteng
    Liu, Yongchang
    Pang, Xuelu
    Wang, Yao
    Xing, Xianran
    Chen, Jun
    SCIENCE CHINA-CHEMISTRY, 2021, 64 (03) : 385 - 402
  • [36] A comprehensive understanding of the anionic redox chemistry in layered oxide cathodes for sodium-ion batteries
    Junteng Jin
    Yongchang Liu
    Xuelu Pang
    Yao Wang
    Xianran Xing
    Jun Chen
    Science China Chemistry, 2021, 64 : 385 - 402
  • [37] Spinel/Post-spinel engineering on layered oxide cathodes for sodium-ion batteries
    Zhu, Yan-Fang
    Xiao, Yao
    Dou, Shi-Xue
    Kang, Yong-Mook
    Chou, Shu-Lei
    ESCIENCE, 2021, 1 (01): : 13 - 27
  • [38] Reductive coupling mechanism in layered oxide cathodes for lithium-/sodium-ion batteries
    Wang, Yao
    Liu, Yongchang
    SCIENCE CHINA-MATERIALS, 2025, 68 (03) : 775 - 779
  • [39] Recent advances and prospects of layered transition metal oxide cathodes for sodium-ion batteries
    Gao, Rui-Min
    Zheng, Zi-Jian
    Wang, Peng-Fei
    Wang, Cao-Yu
    Ye, Huan
    Cao, Fei-Fei
    ENERGY STORAGE MATERIALS, 2020, 30 : 9 - 26
  • [40] A comprehensive understanding of the anionic redox chemistry in layered oxide cathodes for sodium-ion batteries
    Junteng Jin
    Yongchang Liu
    Xuelu Pang
    Yao Wang
    Xianran Xing
    Jun Chen
    Science China(Chemistry), 2021, 64 (03) : 385 - 402