Potassium regulated Na4MnV(PO4)3 microspheres cathode towards robust sodium ion batteries

被引:0
|
作者
Zhan, Haobo [1 ]
Gao, Lin [1 ]
Li, Jian [1 ]
Zhang, Chuankun [1 ]
Wu, Yunpei [1 ]
Tan, Mingsheng [2 ]
Wang, Qin [3 ]
Lv, Fei [3 ]
Tao, Lijuan [3 ]
Cao, Minglei [1 ]
机构
[1] Hubei Univ Automot Technol, Sch Math Phys & Optoelect Engn, Hubei Key Lab Energy Storage & Power Battery, Shiyan 442002, Peoples R China
[2] EVE Energy Co Ltd, Jinmen 448124, Hubei, Peoples R China
[3] Hubei WanRun New Energy Technol Co Ltd, Shiyan 442500, Peoples R China
关键词
Sodium ion batteries; Cathode; K doping; Reaction kinetics; Na4MnV(PO4)3; HIGH-ENERGY; PERFORMANCE;
D O I
10.1016/j.vacuum.2024.113947
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The dual strategy of K regulation and microsphere morphology tailoring for Na4MnV(PO4)3 (NMVP) is designed in this work. By introducing potassium ion within the NMVP structure, the sodium superionic conductor (NASICON)-type framework can be well stabilized. Potassium ions can act as "pillars" within the NASICON framework, slightly expanding the lattice and thereafter promoting faster sodium ion diffusion. Simultaneously, the microsphere morphological design is tailored to optimize the electrochemical performance by decreasing ion diffusion pathways and facilitating a more efficient ion exchange between the electrolyte and the active material, improving the kinetics of Na+ ion upon cycling. As a proof of concept, DFT computations corroborate that K selectively replaces Na1 sites in NMVP, which effectively ameliorates electronic conductivity and diminishes Na diffusion barrier. On the other hand, the heightened ionicity between Mn/V and O, induced by K-doping regulation, arouses a higher redox voltage in K-doped NMVP due to enhanced charge localization. As expected, the optimized NMVP-K1 delivers satisfied capacities of 103.5 mAh and 86.1 mAh g- 1 at 0.1 and 10 C, retaining 79.8 % of its initial capacity undergoing 2000 circulations at 10 C. Moreover, when used in a full SIB, NMVPK1//HC reflects a high energy density of 256.8 Wh kg- 1 at 321 W kg- 1.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Engineering interleaved large and small Na4MnV(PO4)3@NC microspheres cathode towards high performance sodium ion batteries
    Gao, Lin
    Zhan, Haobo
    Zhang, Chuankun
    Cao, Minglei
    DIAMOND AND RELATED MATERIALS, 2024, 148
  • [2] Reaction mechanisms of NASICON-type Na4MnV(PO4)3/C as a cathode for sodium-ion batteries
    Wang, Dongxiao
    Su, Na
    Yu, Zhuo-Er
    Lu, Shigang
    Lyu, Yingchun
    Guo, Bingkun
    ELECTROCHEMISTRY COMMUNICATIONS, 2024, 159
  • [3] Na4MnV(PO4)3-rGO as Advanced cathode for aqueous and non-aqueous sodium ion batteries
    Kumar, P. Ramesh
    Kheireddine, Aziz
    Nisar, Umair
    Shakoor, R. A.
    Essehli, Rachid
    Amin, Ruhul
    Belharouak, Ilias
    JOURNAL OF POWER SOURCES, 2019, 429 (149-155) : 149 - 155
  • [4] On the benefits of Cr substitution on Na4MnV(PO4)3 to improve the high voltage performance as cathode for sodium-ion batteries
    Lavela, P.
    Klee, R.
    Tirado, J. L.
    JOURNAL OF POWER SOURCES, 2021, 495
  • [5] Sodium intercalation/de-intercalation mechanism in Na4MnV(PO4)3 cathode materials
    Nisar, Umair
    Shakoor, R. A.
    Essehli, Rachid
    Amin, Ruhul
    Orayech, Brahim
    Ahmad, Zubair
    Kumar, P. Ramesh
    Kahraman, Ramazan
    Al-Qaradawi, Siham
    Soliman, Ahmed
    ELECTROCHIMICA ACTA, 2018, 292 : 98 - 106
  • [6] The nitrogen-doped carbon coated Na4MnV(PO4)3 as a high electrochemical performance cathode material for sodium-ion batteries
    Wang, Yingshuai
    Wang, Qianchen
    Ding, Xiangyu
    Wang, Meng
    Xin, Yuhang
    Gao, Hongcai
    APPLIED SURFACE SCIENCE, 2022, 601
  • [7] Boosting the cyclability and electrochemical kinetics of Na4MnV(PO4)3/C cathode material through Zr doping for sodium-ion batteries
    Ou, Jiaxin
    Sun, Ye
    Guo, Yiwen
    Zhang, Honghai
    He, Yuchao
    Huang, Bin
    Chen, Quanqi
    JOURNAL OF ENERGY STORAGE, 2025, 112
  • [8] Investigating the effect of calcination temperature on the electrochemical properties of Na4MnV(PO4)3/NC@CNTs cathode materials for sodium ion batteries
    Zhu, Yuanqiang
    Xu, Hui
    Bao, Yuanhai
    Li, Siyao
    Chen, Yong
    JOURNAL OF ENERGY STORAGE, 2024, 90
  • [9] Electrochemical performance of Na4P2O7 decorated Na4MnV(PO4)3/C cathode material for sodium-ion batteries
    Guo, Yiwen
    Ou, Jiaxin
    Sun, Ye
    Zhang, Honghai
    He, Yuchao
    Huang, Bin
    Chen, Quanqi
    MATERIALS LETTERS, 2024, 370
  • [10] Three-dimensional porous Na4MnV(PO4)3 constructed by Aspergillus niger biological template as a high performance cathode for sodium ion batteries
    Chen, Jiepeng
    Huang, Yun
    Liu, Jiapin
    Li, Chengwei
    Zheng, He
    Xu, Xi
    Fu, Lei
    Li, Xing
    Wang, Mingshan
    Lin, Yuanhua
    Cao, Haijun
    ELECTROCHIMICA ACTA, 2023, 458