Effect of Sodium Phosphate Coating on Cu and Mg-Substituted P2-Na0.67Ni0.33Mn0.67O2 for Improving the Cycling Performance of Sodium-Ion Capacitors

被引:5
|
作者
Lee, Song Yeul [1 ]
Kim, Yang Soo [2 ]
Park, Sangho [3 ]
Lee, Yun-Sung [1 ]
Park, Yong Il [1 ]
机构
[1] Chonnam Natl Univ, Sch Chem Engn, Gwangju 61186, South Korea
[2] Korea Basic Sci Inst, Jeonju 54907, South Korea
[3] Dongshin Univ, Dept Battery Engn, Naju 58245, South Korea
基金
新加坡国家研究基金会;
关键词
sodium; capacitor; energy storage; battery-type cathode; hybrid capacitor; ENERGY-STORAGE; HIGH-POWER; CATHODE; LITHIUM; BATTERY; ELECTROLYTE;
D O I
10.1021/acsami.3c13351
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Sodium-ion capacitors (SICs) bridge the performance gaps between batteries and supercapacitors by providing a high energy and power density in a single configuration. As battery-type active materials, sodium preintercalated layered metal oxides are desirable owing to their unique crystal structure, simple synthesis process, and high working voltage. However, their poor cyclic stability and low kinetics limit their application. Herein, we report increased rate capability and cycle stability achieved by introducing transition metal substitution and surface coating strategies. By substituting a portion of Ni and Mn with Cu and Mg (the sample name was denoted as NMCM), the P2-O2 transition which occurs at high voltages was alleviated. Additionally, a thin and uniform sodium phosphate coating layer suppressed surface side reactions occurring during charge-discharge processes, as observed through ex-situ X-ray photoelectron spectroscopy and ex-situ transmission electron microscopy. Compared to the pristine sample, the capacity improved by 48% at a high current density of 4 A g(-1). After 100 cycles, the sodium-phosphate-coated sample (NMCM@P) retained about 90% of its capacity, whereas NMCM had a capacity retention of 63%. When evaluating the longer stability of SIC full cells, NMCM@P exhibited an outstanding stability of 71% after 5000 cycles. This was higher than that of NMCM, which retained only 17% of its initial capacity.
引用
收藏
页码:54530 / 54538
页数:9
相关论文
共 50 条
  • [31] Construction of a stable interface at the Na0.67Ni0.33Mn0.67O2 cathode using LiDFOB electrolyte additives for high-performance sodium-ion batteries
    Li, Siyao
    Xu, Hui
    Zhu, Yuanqiang
    Yang, Ziwei
    Bao, Yuanhai
    Chen, Yong
    JOURNAL OF MATERIALS CHEMISTRY A, 2024, 12 (45) : 31347 - 31361
  • [32] Cu-doped layered P2-type Na0.67Ni0.33-xCuxMn0.67O2 cathode electrode material with enhanced electrochemical performance for sodium-ion batteries
    Yang, Liu
    Luo, Shao-hua
    Wang, Yafeng
    Zhan, Yang
    Wang, Qing
    Zhang, Yahui
    Liu, Xin
    Mu, Wenning
    Teng, Fei
    CHEMICAL ENGINEERING JOURNAL, 2021, 404
  • [33] Promoting Na-ion storage in P2-Na0.67Ni0.33Mn0.67O2 cathode via synergetic Ti and Zn Co-incorporation
    Chen, Di
    Zhang, Haolin
    Yang, Hui Ying
    Yu, Caiyan
    Bai, Ying
    APPLIED PHYSICS LETTERS, 2024, 124 (08)
  • [34] Insights into the enhanced structure stability and electrochemical performance of Ti4+/F~- co-doped P2-Na0.67Ni0.33Mn0.67O2 cathodes for sodium ion batteries at high voltage
    Pengfei Zhou
    Jing Zhang
    Zhennan Che
    Zuhao Quan
    Ju Duan
    Xiaozhong Wu
    Junying Weng
    Jinping Zhao
    Jin Zhou
    Journal of Energy Chemistry, 2022, 67 (04) : 655 - 662
  • [35] The effect of Sn substitution on the structure and oxygen activity of Na0.67Ni0.33Mn0.67O2 cathode materials for sodium ion batteries
    Li, Jinke
    Risthaus, Tim
    Wang, Jun
    Zhou, Dong
    He, Xin
    Ehteshami, Niloofar
    Murzin, Vadim
    Friesen, Alex
    Liu, Haidong
    Hou, Xu
    Diehl, Marcel
    Paillard, Elie
    Winter, Martin
    Li, Jie
    JOURNAL OF POWER SOURCES, 2020, 449 (449)
  • [36] Ca/Li Synergetic-Doped Na0.67Ni0.33Mn0.67O2 to Realize P2-O2 Phase Transition Suppression for High-Performance Sodium-Ion Batteries
    Xiao, Ke
    Zhao, Bangchuan
    Bai, Jin
    Mao, Yunjie
    Wang, Peiyao
    Wang, Siya
    Zhu, Xuebin
    Sun, Yuping
    CHEMISTRY-A EUROPEAN JOURNAL, 2024, 30 (69)
  • [37] The evolution of structure–property relationship of P2-type Na0.67Ni0.33Mn0.67O2 by vanadium substitution and organic electrolyte combinations for sodium-ion batteries
    Debanjana Pahari
    Arghadeep Chowdhury
    Dhrubajyoti Das
    Tanmoy Paul
    Sreeraj Puravankara
    Journal of Solid State Electrochemistry, 2023, 27 : 2067 - 2082
  • [38] A comprehensive modification enables the high rate capability of P2-Na0.75Mn0.67Ni0.33O2 for sodium-ion cathode materials
    Xiaochen Feng
    Yong Li
    Qinhao Shi
    Xuan Wang
    Xiuping Yin
    JingWang
    Zhonghong Xia
    Haiyan Xiao
    Aibing Chen
    Xinxin Yang
    Yufeng Zhao
    Journal of Energy Chemistry, 2022, 69 (06) : 442 - 449
  • [39] A comprehensive modification enables the high rate capability of P2-Na0.75Mn0.67Ni0.33O2 for sodium-ion cathode materials
    Feng, Xiaochen
    Li, Yong
    Shi, Qinhao
    Wang, Xuan
    Yin, Xiuping
    Wang, Jing
    Xia, Zhonghong
    Xiao, Haiyan
    Chen, Aibing
    Yang, Xinxin
    Zhao, Yufeng
    JOURNAL OF ENERGY CHEMISTRY, 2022, 69 : 442 - 449
  • [40] K-Doping Suppresses Oxygen Redox in P2-Na0.67Ni0.11Cu0.22Mn0.67O2 Cathode Materials for Sodium-Ion Batteries
    Zhou, Bei
    Wong, Deniz
    Fu, Zhongheng
    Guo, Hao
    Schulz, Christian
    Karkera, Guruprakash
    Hahn, Horst
    Bianchini, Matteo
    Wang, Qingsong
    SMALL, 2024, 20 (43)