Modulating the oxygen redox activity of an ultra-high capacity P3 type cathode for sodium-ion batteries via beryllium introduced

被引:22
作者
Chen, Baorui [1 ,3 ]
Xin, Yuhang [1 ]
Wang, Yingshuai [1 ]
Ding, Xiangyu [1 ]
Jiang, Chunyu [1 ]
Wu, Feng [1 ]
Gao, Hongcai [1 ,2 ,3 ]
机构
[1] Beijing Inst Technol, Sch Mat Sci & Engn, Beijing 100081, Peoples R China
[2] Beijing Inst Technol, Yangtze Delta Reg Acad, Jiaxing 314019, Peoples R China
[3] Beijing Inst Technol, Chongqing Innovat Ctr, Chongqing 401120, Peoples R China
关键词
P3 -type layered oxide; Beryllium; Mn/O charge compensation mechanisms; Anionic redox; Sodium -ion batteries; ANIONIC REDOX; OXIDES;
D O I
10.1016/j.ensm.2024.103252
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Sodium-ion batteries (SIBs) show great potential for energy storage due to their good electrochemical properties and intrinsic cost performance, and sodium-ion cathode materials with high capacity and stable structure are the inevitable future development trend. While conventional anionic redox-active layered oxide cathode materials offer the advantage of extra capacity, challenges such as irreversible oxygen release still need to be addressed. Herein, beryllium is successfully introduced into P3-NaxLiyMn1-yO2 series of layered oxide materials for the first time, and the developed P3-Na0.6Li0.2Be0.25Mn0.675O2 (NLBMO) with the modulation of lattice oxygen activity can reach an ultra-high reversible capacity of 212.6 mAh g-1, significantly surpassing the P3-Na0.6Li0.2Mn0.8O2 (NLMO, 165.7 mAh g-1). Based on a comprehensive comparison with the P3-NLMO, the effect of beryllium on the Mn/O charge complementary mechanism is revealed. Since the strong covalency of beryllium can inhibit the oxidation of excess O through the formation of stable Be-O bonds, while irreversible peroxidation of partially unstable (O2)n- occurs to stimulate more Mn4+/Mn3+ to replace O for charge compensation. As a result, pollution and structural damage caused by O peroxidation are effectively suppressed while achieving ultra-high capacity. In-situ XRD reveals that P3-NLBMO exhibits high structural reversibility during charging and discharging processes, indicating that the formation of Be-O bonds can also further stabilize the crystal structure during cycling. Therefore, beryllium modification strategy proposed in this work provides a novel route to synthesize novel SIBs cathode materials with higher performance.
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页数:11
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共 64 条
[31]  
Ryu HH, 2019, ADV ENERGY MATER, V9, DOI [10.1002/aenm.201970174, 10.1002/aenm.201902698]
[32]   Efficient Stabilization of Na Storage Reversibility by Ti Integration into O′3-Type NaMnO2 [J].
Sato, Takuro ;
Yoshikawa, Kazuki ;
Zhao, Wenwen ;
Kobayashi, Tokio ;
Rajendra, Hongahally Basappa ;
Yonemura, Masao ;
Yabuuchi, Naoaki .
ENERGY MATERIAL ADVANCES, 2021, 2021
[33]   Synthesis and thermodynamics of transition metal oxide based sodium ion cathode materials [J].
Shivaramaiah, Radha ;
Tallapragada, Sindhoora ;
Nagabhushana, G. P. ;
Navrotsky, Alexandra .
JOURNAL OF SOLID STATE CHEMISTRY, 2019, 280 :237-241
[34]   A novel P3-type Na2/3Mg1/3Mn2/3O2 as high capacity sodium-ion cathode using reversible oxygen redox [J].
Song, Bohang ;
Hu, Enyuan ;
Liu, Jue ;
Zhang, Yiman ;
Yang, Xiao-Qing ;
Nanda, Jagjit ;
Huq, Ashfia ;
Page, Katharine .
JOURNAL OF MATERIALS CHEMISTRY A, 2019, 7 (04) :1491-1498
[35]   Capacity Degradation Mechanism and Cycling Stability Enhancement of AIF3-Coated Nanorod Gradient Na[Ni0.65Co0.08Mn0.27]O2 Cathode for Sodium-Ion Batteries [J].
Sun, Ho-Hyun ;
Hwang, Jang-Yeon ;
Yoon, Chong Seung ;
Heller, Adam ;
Mullins, C. Buddie .
ACS NANO, 2018, 12 (12) :12912-12922
[36]   Hysteresis-Suppressed Reversible Oxygen-Redox Cathodes for Sodium-Ion Batteries [J].
Voronina, Natalia ;
Shin, Min-Young ;
Kim, Hee-Jae ;
Yaqoob, Najma ;
Guillon, Olivier ;
Song, Seok Hyun ;
Kim, Hyungsub ;
Lim, Hee-Dae ;
Jung, Hun-Gi ;
Kim, Younghak ;
Lee, Han-Koo ;
Lee, Kug-Seung ;
Yazawa, Koji ;
Gotoh, Kazuma ;
Kaghazchi, Payam ;
Myung, Seung-Taek .
ADVANCED ENERGY MATERIALS, 2022, 12 (21)
[37]   Recent Advances in Electrode Materials with Anion Redox Chemistry for Sodium-Ion Batteries [J].
Voronina, Natalia ;
Myung, Seung-Taek .
ENERGY MATERIAL ADVANCES, 2021, 2021
[38]   A New Approach to Stable Cationic and Anionic Redox Activity in O3-Layered Cathode for Sodium-Ion Batteries [J].
Voronina, Natalia ;
Yaqoob, Najma ;
Kim, Hee Jae ;
Lee, Kug-Seung ;
Lim, Hee-Dae ;
Jung, Hun-Gi ;
Guillon, Olivier ;
Kaghazchi, Payam ;
Myung, Seung-Taek .
ADVANCED ENERGY MATERIALS, 2021, 11 (25)
[39]   Empowering higher energy sodium-ion battery cathode by oxygen chemistry [J].
Wan, Guangying ;
Dou, Wendi ;
Zhu, Hanye ;
Zhang, Wu ;
Liu, Tiefeng ;
Wang, Liguang ;
Lu, Jun .
INTERDISCIPLINARY MATERIALS, 2023, 2 (03) :416-422
[40]   An Abnormal 3.7Volt O3-Type Sodium-Ion Battery Cathode [J].
Wang, Peng-Fei ;
Xin, Hanshen ;
Zuo, Tong-Tong ;
Li, Qinghao ;
Yang, Xinan ;
Yin, Ya-Xia ;
Gao, Xike ;
Yu, Xiqian ;
Guo, Yu-Guo .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2018, 57 (27) :8178-8183