High-Entropy Materials for Lithium Batteries

被引:3
|
作者
Ritter, Timothy G. [1 ]
Pappu, Samhita [2 ]
Shahbazian-Yassar, Reza [2 ]
机构
[1] Univ Illinois, Dept Civil & Mat Engn, Chicago, IL 60607 USA
[2] Univ Illinois, Dept Mech & Ind Engn, Chicago, IL 60607 USA
来源
BATTERIES-BASEL | 2024年 / 10卷 / 03期
基金
美国国家科学基金会;
关键词
high-entropy materials; lithium-ion batteries; anodes; cathodes; electrolytes; lithium-sulfur; metal-air; RECENT PROGRESS; MICROSTRUCTURE; ELECTROLYTES; STORAGE;
D O I
10.3390/batteries10030096
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
High-entropy materials (HEMs) constitute a revolutionary class of materials that have garnered significant attention in the field of materials science, exhibiting extraordinary properties in the realm of energy storage. These equimolar multielemental compounds have demonstrated increased charge capacities, enhanced ionic conductivities, and a prolonged cycle life, attributed to their structural stability. In the anode, transitioning from the traditional graphite (372 mAh g-1) to an HEM anode can increase capacity and enhance cycling stability. For cathodes, lithium iron phosphate (LFP) and nickel manganese cobalt (NMC) can be replaced with new cathodes made from HEMs, leading to greater energy storage. HEMs play a significant role in electrolytes, where they can be utilized as solid electrolytes, such as in ceramics and polymers, or as new high-entropy liquid electrolytes, resulting in longer cycling life, higher ionic conductivities, and stability over wide temperature ranges. The incorporation of HEMs in metal-air batteries offers methods to mitigate the formation of unwanted byproducts, such as Zn(OH)4 and Li2CO3, when used with atmospheric air, resulting in improved cycling life and electrochemical stability. This review examines the basic characteristics of HEMs, with a focus on the various applications of HEMs for use as different components in lithium-ion batteries. The electrochemical performance of these materials is examined, highlighting improvements such as specific capacity, stability, and a longer cycle life. The utilization of HEMs in new anodes, cathodes, separators, and electrolytes offers a promising path towards future energy storage solutions with higher energy densities, improved safety, and a longer cycling life.
引用
收藏
页数:22
相关论文
共 50 条
  • [1] The Role of High-Entropy Materials in Lithium-Based Rechargeable Batteries
    Guo, Rongnan
    Yang, Yi
    Zhao, Chongchong
    Huo, Feng
    Xue, Jiaojiao
    He, Jinhai
    Sun, Bowen
    Sun, Zixu
    Liu, Hua Kun
    Dou, Shi Xue
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2024, 34 (18)
  • [2] Opportunities and challenges of high-entropy materials in lithium-ion batteries
    TongYue Xu
    HuaiWei Feng
    Wei Liu
    Yan Wang
    HongHe Zheng
    [J]. Rare Metals, 2024, 43 (10) - 4902
  • [3] Opportunities and challenges of high-entropy materials in lithium-ion batteries
    Xu, Tong-Yue
    Feng, Huai-Wei
    Liu, Wei
    Wang, Yan
    Zheng, Hong-He
    [J]. RARE METALS, 2024, 43 (10) : 4884 - 4902
  • [4] Recent advances and understanding of high-entropy materials for lithium-ion batteries
    Feng, Songjun
    Liu, Hui
    [J]. NANOTECHNOLOGY, 2024, 35 (30)
  • [5] Opportunities for High-Entropy Materials in Rechargeable Batteries
    Chen, Yuwei
    Fu, Haoyu
    Huang, Yangyang
    Huang, Liqiang
    Zheng, Xueying
    Dai, Yiming
    Huang, Yunhui
    Luo, Wei
    [J]. ACS MATERIALS LETTERS, 2021, 3 (02): : 160 - 170
  • [6] Emerging medium- and high-entropy materials as catalysts for lithium-sulfur batteries
    Goncalves, Josue M.
    Santos, Erick A.
    Martins, Paulo Roberto
    Silva, Cristiane Garcia
    Zanin, Hudson
    [J]. ENERGY STORAGE MATERIALS, 2023, 63
  • [7] High-entropy electrolytes for practical lithium metal batteries
    Kim, Sang Cheol
    Wang, Jingyang
    Xu, Rong
    Zhang, Pu
    Chen, Yuelang
    Huang, Zhuojun
    Yang, Yufei
    Yu, Zhiao
    Oyakhire, Solomon T.
    Zhang, Wenbo
    Greenburg, Louisa C.
    Kim, Mun Sek
    Boyle, David T.
    Sayavong, Philaphon
    Ye, Yusheng
    Qin, Jian
    Bao, Zhenan
    Cui, Yi
    [J]. NATURE ENERGY, 2023, 8 (08) : 814 - 826
  • [8] High-Entropy Electrolytes for Lithium-Ion Batteries
    Wang, Qidi
    Wang, Jianlin
    Heringa, Jouke R.
    Bai, Xuedong
    Wagemaker, Marnix
    [J]. ACS ENERGY LETTERS, 2024, 9 (08): : 3796 - 3806
  • [9] High-entropy electrolytes for practical lithium metal batteries
    Sang Cheol Kim
    Jingyang Wang
    Rong Xu
    Pu Zhang
    Yuelang Chen
    Zhuojun Huang
    Yufei Yang
    Zhiao Yu
    Solomon T. Oyakhire
    Wenbo Zhang
    Louisa C. Greenburg
    Mun Sek Kim
    David T. Boyle
    Philaphon Sayavong
    Yusheng Ye
    Jian Qin
    Zhenan Bao
    Yi Cui
    [J]. Nature Energy, 2023, 8 : 814 - 826
  • [10] High-entropy oxides as advanced anode materials for long-life lithium-ion Batteries
    Xiao, Bin
    Wu, Gang
    Wang, Tongde
    Wei, Zhengang
    Sui, Yanwei
    Shen, Baolong
    Qi, Jiqiu
    Wei, Fuxiang
    Zheng, Junchao
    [J]. NANO ENERGY, 2022, 95