A Ni/Co-free high-entropy layered cathode with suppressed phase transition and near-zero strain for high-voltage sodium-ion batteries

被引:34
作者
Wang, Ziqing [1 ]
Fang, Lei [1 ]
Fu, Xiaoguang [1 ,2 ]
Zhang, Shengfeng [1 ]
Kong, Huabin [1 ]
Chen, Hongwei [1 ]
Fu, Fang [1 ]
机构
[1] Huaqiao Univ, Coll Mat Sci & Engn, Xiamen 361021, Peoples R China
[2] Xiamen Univ, Coll Phys Sci & Technol, Xiamen 361005, Peoples R China
基金
中国国家自然科学基金;
关键词
High-entropy; High-voltage; Phase-transition; Sodium-based layered cathode; Sodium-ion battery; ANIONIC REDOX; OXIDE CATHODE; COMPOSITE; SUBSTITUTION; CHEMISTRY; CU;
D O I
10.1016/j.cej.2023.148130
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
High-entropy layered oxides have emerged as a new class of cathode materials for sodium-ion batteries by providing infinite possibilities to tailor energy storage capabilities. However, owing to the lack of advanced high-entropy layered material, the influence of configurational entropy/compositional disorder on the high-voltage electrochemical performance of sodium-based layered cathode has seldom been explored. In this work, a Ni/ Co-free high-entropy layered oxide P2-Na0.65Mn0.65Cu0.2Li0.06Mg0.015Ti0.015Al0.015Zr0.015Y0.015La0.015O2 (Mn-Cu-HEO) was prepared by stirring hydrothermal method, and investigated as a new cathode material for sodium-ion batteries. It is found that high configurational entropy and strong M-O configurations (M = Ti, Al, Zr, Y, and La) greatly stabilize the layered framework structure and MnO6 octahedral local structure, restraining the deleterious phase transition and large volume change during high-voltage cycling, thus resulting in high reversible cationic/anionic redox. In the meantime, disordered atomic arrangement in transition metal layer efficaciously mitigates Na+/vacancy ordering during de-/sodiation, enhancing the Na+ transport kinetics. Benefiting from the high-entropy stabilization effect, complex atomic arrangement, and multielemental composition, Mn-Cu-HEO displays splendid cyclic stability (87.2 % capacity retention after 500 cycles, very small change in cell volume (0.53 %) after 100 cycles), excellent rate capability (55.5 mAh g- 1 at 10C), and a usable reversible capacity of 85.1 mAh g- 1 at 1C in high-voltage range of 2.0-4.5 V. This work expands the horizons of high-entropy layered materials, providing new insight in the design and construction of highly stable and high-voltage sodium ion host.
引用
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页数:10
相关论文
共 43 条
[11]   Evolution of the electrochemical interface in sodium ion batteries with ether electrolytes [J].
Li, Kaikai ;
Zhang, Jun ;
Lin, Dongmei ;
Wang, Da-Wei ;
Li, Baohua ;
Lv, Wei ;
Sun, Sheng ;
He, Yan-Bing ;
Kang, Feiyu ;
Yang, Quan-Hong ;
Zhou, Limin ;
Zhang, Tong-Yi .
NATURE COMMUNICATIONS, 2019, 10 (1)
[12]   An Undoped Tri-Phase Coexistent Cathode Material for Sodium-Ion Batteries [J].
Li, Ranran ;
Gao, Jian ;
Li, Junpeng ;
Huang, Hao ;
Li, Xiaolei ;
Wang, Wenlong ;
Zheng, Li-Rong ;
Hao, Shu-Meng ;
Qiu, Jieshan ;
Zhou, Weidong .
ADVANCED FUNCTIONAL MATERIALS, 2022, 32 (41)
[13]   Whole-Voltage-Range Oxygen Redox in P2-Layered Cathode Materials for Sodium-Ion Batteries [J].
Li, Xun-Lu ;
Wang, Tian ;
Yuan, Yifei ;
Yue, Xin-Yang ;
Wang, Qin-Chao ;
Wang, Jun-Yang ;
Zhong, Jun ;
Lin, Ruo-Qian ;
Yao, Yuan ;
Wu, Xiao-Jing ;
Yu, Xi-Qian ;
Fu, Zheng-Wen ;
Xia, Yong-Yao ;
Yang, Xiao-Qing ;
Liu, Tongchao ;
Amine, Khalil ;
Shadike, Zulipiya ;
Zhou, Yong-Ning ;
Lu, Jun .
ADVANCED MATERIALS, 2021, 33 (13)
[14]   High-Entropy Sulfides as Electrode Materials for Li-Ion Batteries [J].
Lin, Ling ;
Wang, Kai ;
Sarkar, Abhishek ;
Njel, Christian ;
Karkera, Guruprakash ;
Wang, Qingsong ;
Azmi, Raheleh ;
Fichtner, Maximilian ;
Hahn, Horst ;
Schweidler, Simon ;
Breitung, Ben .
ADVANCED ENERGY MATERIALS, 2022, 12 (08)
[15]   P2-Na0.67AlxMn1-xO2: Cost-Effective, Stable and High-Rate Sodium Electrodes by Suppressing Phase Transitions and Enhancing Sodium Cation Mobility [J].
Liu, Xiangsi ;
Zuo, Wenhua ;
Zheng, Bizhu ;
Xiang, Yuxuan ;
Zhou, Ke ;
Xiao, Zhumei ;
Shan, Peizhao ;
Shi, Jingwen ;
Li, Qi ;
Zhong, Guiming ;
Fu, Riqiang ;
Yang, Yong .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2019, 58 (50) :18086-18095
[16]   In situ X-ray diffraction study of P2-Na2/3[Ni1/3Mn2/3]O2 [J].
Lu, ZH ;
Dahn, JR .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2001, 148 (11) :A1225-A1229
[17]   Mitigating the P2-O2 transition and Na+/vacancy ordering in Na2/3Ni1/3Mn2/3O2 by anion/cation dual-doping for fast and stable Na+ insertion/extraction [J].
Mao, Qianjiang ;
Yu, Yang ;
Wang, Junkai ;
Zheng, Lirong ;
Wang, Zhenya ;
Qiu, Yunsheng ;
Hao, Yongmei ;
Liu, Xiangfeng .
JOURNAL OF MATERIALS CHEMISTRY A, 2021, 9 (17) :10803-10811
[18]   Dual-Strategy of Cation-Doping and Nanoengineering Enables Fast and Stable Sodium-Ion Storage in a Novel Fe/Mn-Based Layered Oxide Cathode [J].
Shen, Qiuyu ;
Zhao, Xudong ;
Liu, Yongchang ;
Li, Youpeng ;
Zhang, Jian ;
Zhang, Ning ;
Yang, Chenghao ;
Chen, Jun .
ADVANCED SCIENCE, 2020, 7 (21)
[19]   Niobium-doped layered cathode material for high-power and low-temperature sodium-ion batteries [J].
Shi, Qinhao ;
Qi, Ruijuan ;
Feng, Xiaochen ;
Wang, Jing ;
Li, Yong ;
Yao, Zhenpeng ;
Wang, Xuan ;
Li, Qianqian ;
Lu, Xionggang ;
Zhang, Jiujun ;
Zhao, Yufeng .
NATURE COMMUNICATIONS, 2022, 13 (01)
[20]   A novel Mn-based P2/tunnel/O3′ tri-phase composite cathode with enhanced sodium storage properties [J].
Wang, Dong ;
Liu, Yihua ;
Wu, Zhenguo ;
Liu, Xiaohong ;
Qu, Jie ;
Liu, Hao ;
Ming, Yong ;
Zhong, Yanjun ;
Zhong, Benhe ;
Guo, Xiaodong .
CHEMICAL COMMUNICATIONS, 2020, 56 (19) :2921-2924