New Insight into the Role of Mn Doping on the Bulk Structure Stability and Interfacial Stability of Ni-Rich Layered Oxide

被引:16
作者
Li, Wenjin [1 ,2 ,3 ]
Zhuang, Weidong [1 ,3 ]
Gao, Min [2 ]
Zhou, Yunan [4 ,5 ]
Zhang, Jian [6 ]
Li, Ning [2 ]
Liu, Xianghuan [1 ,2 ,3 ]
Huang, Wei [1 ,2 ,3 ]
Lu, Shigang [1 ,2 ,3 ]
机构
[1] Grinm Grp Co Ltd, Natl Power Battery Innovat Ctr, Beijing 100088, Peoples R China
[2] China Automot Battery Res Inst Co Ltd, Beijing 101407, Peoples R China
[3] Gen Res Inst Nonferrous Met, Beijing 100088, Peoples R China
[4] Tsinghua Shenzhen Int Grad Sch, Shenzhen Key Lab Power Battery Safety Res, Shenzhen 518055, Peoples R China
[5] Tsinghua Shenzhen Int Grad Sch, Shenzhen Geim Graphene Ctr, Shenzhen 518055, Peoples R China
[6] Univ Sci & Technol Beijing, Sch Met & Ecol Engn, Beijing 100083, Peoples R China
基金
中国国家自然科学基金;
关键词
Ni-rich layered oxide; Mn doping; Rock salt phase; Fading mechanism; Cycling performance; LITHIUM-ION BATTERIES; TRANSITION-METAL OXIDE; CATHODE MATERIAL; HIGH-ENERGY; ELECTROCHEMICAL PROPERTIES; CYCLING PERFORMANCE; CONCENTRATION GRADIENT; SURFACE; DEGRADATION; STORAGE;
D O I
10.1002/cnma.201900640
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nickel-rich layered oxides have developed into appealing cathode materials for lithium-ion batteries in recent years for the sake of high energy density and low cost, but they suffer from severe capacity deterioration during long-term cycling. Herein, Mn-doped nickel-rich Li(Ni0.88Co0.09Al0.03)(1-delta)Mn delta O2 (delta=0, 0.01, 0.02) cathode materials with a nanoscale NixMn1-xO-type pillar layer are synthesized using a facile high-shear dry mixing and high-temperature calcination process in this study. The as-fabricated M0.01-NCA electrode with a NixMn1-xO-type layer about 20 nm exhibits excellent cycle performance compared with the pristine in coin-cells and in pouch cells (the long-term cycle number is four times that of the pristine). Detailed investigation of the fading mechanism is performed by HRTEM, ex-situ XRD, XPS et al. The enhanced performance is directly related to the synergetic effects of bulk inactive Mn4+ doping and the increased nanoscale NixMn1-xO-type pillar layer. The Mn dopants stabilize the lattice structure thus decreasing the microcracks, and the pillar layer protects the cathode from parasitic reactions with electrolytes during long-term cycling. This work gives a new insight into the role of Mn doping on the enhanced structure of nickel-rich layered oxides.
引用
收藏
页码:451 / 460
页数:10
相关论文
共 50 条
  • [41] Improving the reversibility of the H2-H3 phase transitions for layered Ni-rich oxide cathode towards retarded structural transition and enhanced cycle stability
    Wu, Feng
    Liu, Na
    Chen, Lai
    Su, Yuefeng
    Tan, Guoqiang
    Bao, Liying
    Zhang, Qiyu
    Lu, Yun
    Wang, Jing
    Chen, Shi
    Tan, Jing
    [J]. NANO ENERGY, 2019, 59 : 50 - 57
  • [42] High rate capability and cyclic stability of Ni-rich layered oxide LiNi0.83Co0.12Mn0.05-xAlxO2 cathodes: Nanofiber versus nanoparticle morphology
    Mitra, Soumyadip
    Sudakar, Chandran
    [J]. BATTERY ENERGY, 2024, 3 (03):
  • [43] Realizing superior cycling stability of Ni-Rich layered cathode by combination of grain boundary engineering and surface coating
    Cheng, Xiaopeng
    Zheng, Jianming
    Lu, Junxia
    Li, Yonghe
    Yan, Pengfei
    Zhang, Yuefei
    [J]. NANO ENERGY, 2019, 62 : 30 - 37
  • [44] Simultaneous enhancement of ordered layered structure and inhibition of micro-cracks via porous structure to improve stability for Ni-rich cathode
    Zhang, Xiaosong
    Liu, Yun
    Wang, Mengyuan
    Guo, Ziyin
    Cao, Longhao
    Xiao, Yao
    Chen, Lai
    Cheng, Ya-Jun
    Xia, Yonggao
    [J]. JOURNAL OF ENERGY STORAGE, 2024, 76
  • [45] Electrophoretic deposition of graphene oxide as a stabilizing layer on the Ni-rich layered oxide electrodes for enhancing the cycling stability of Li-ion cathodes
    Chameh, Behnam
    Saznaghi, Maryam Hemmati
    Ghazvini, Ali asghar Sadeghi
    Shahalizade, Taieb
    Javanmardi, Shayan
    Samandari, Hadis
    Molababaei, Mahsa
    Raissi, Babak
    Aghaei, Alireza
    Yaghmaee, Maziar Sahba
    Riahifar, Reza
    [J]. JOURNAL OF ENERGY STORAGE, 2024, 81
  • [46] Understanding improved cycling and thermal stability of compositionally graded Ni-rich layered LiNi 0.6 Mn 0.2 Co 0.2 O 2 cathode materials
    Bak, Seong-Min
    Song, Myeongjun
    Shadike, Zulipiya
    Hunt, Adrian
    Waluyo, Iradwikanari
    Sadowski, Jerzy T.
    Yan, Hanfei
    Chu, Yong S.
    Yang, Xiao-Qing
    Huang, Xiaojing
    Shin, Youngho
    [J]. NANO ENERGY, 2024, 126
  • [47] UiO-66 type metal-organic framework as a multifunctional additive to enhance the interfacial stability of Ni-rich layered cathode material
    Xue, Ruixue
    Liu, Na
    Bao, Liying
    Chen, Lai
    Su, Yuefeng
    Lu, Yun
    Dong, Jinyang
    Chen, Shi
    Wu, Feng
    [J]. JOURNAL OF ENERGY CHEMISTRY, 2020, 50 : 378 - 386
  • [48] Tracking the Influence of Thermal Expansion and Oxygen Vacancies on the Thermal Stability of Ni-Rich Layered Cathode Materials
    Lee, Eunkang
    Muhammad, Shoaib
    Kim, Taewhan
    Kim, Hyunchul
    Lee, Wontae
    Yoon, Won-Sub
    [J]. ADVANCED SCIENCE, 2020, 7 (12)
  • [49] The Origin of High-Voltage Stability in Single-Crystal Layered Ni-Rich Cathode Materials
    Sun, Jianming
    Cao, Xin
    Yang, Huijun
    He, Ping
    Dato, Michael A.
    Cabana, Jordi
    Zhou, Haoshen
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2022, 61 (40)
  • [50] Dual-Modified Compact Layer and Superficial Ti Doping for Reinforced Structural Integrity and Thermal Stability of Ni-Rich Cathodes
    Yang, Wen
    Bai, Chang-Jiang
    Xiang, Wei
    Song, Yang
    Xu, Chun-Liu
    Qiu, Lang
    He, Feng-Rong
    Zhang, Jun
    Sun, Yan
    Liu, Yang
    Zhong, Ben-He
    Wu, Zhen-Guo
    Guo, Xiao-Dong
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2021, 13 (46) : 54997 - 55006