Highly [010]-oriented, gradient Co-doped LiMnPO4 with enhanced cycling stability as cathode for Li-ion batteries

被引:17
|
作者
Wang, Ruijie [1 ]
Zheng, Jinyun [1 ]
Feng, Xiangming [1 ]
Yao, Ge [1 ]
Niu, Huiting [1 ]
Liu, Qingyi [1 ]
Chen, Weihua [1 ]
机构
[1] Zhengzhou Univ, Coll Chem, Zhengzhou 450001, Peoples R China
基金
中国国家自然科学基金;
关键词
Lithium manganese phosphate; Cobalt doping; Surface-doped; Cathode material; Lithium-ion battery; Gradient material; HIGH-PERFORMANCE; ELECTROCHEMICAL PROPERTIES; SOLVOTHERMAL SYNTHESIS; ASSISTED SYNTHESIS; LOW-TEMPERATURE; LITHIUM; FACILE; NANOSTRUCTURE; COMPOSITES; NANORODS;
D O I
10.1007/s10008-019-04485-1
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
LiMnPO4 has been attracting attention for high energy density (701 Wh kg(-1)) and excellent safety. However, LiMnPO4 suffers from the cycling instability coming from the fragile solid electrolyte interface, besides the Jahn-Teller effect of Mn3+, the poor electrical conductivity and the sluggish ionic conductivity. The substitution of cation with less ionic radius for Mn2+ is conducive to stabilize the solid-electrolyte interface and retard the erosion from electrolyte; therefore, the gradient Co-doped LiMn0.98Co0.02PO4 was synthesized with 25.93 (mol) % Co on the surface by the secondary solvothermal method, and the permeated depth reaches more than 20 nm because of the coprecipitation and cation exchange of Co2+ and Mn2+. LiMn0.98Co0.02PO4/Li cell that demonstrates the cycling performance is remarkably enhanced with 87% capacity retention after 380 cycles at room temperature, even 87% after 100 cycles at 60 degrees C. Meanwhile, the preferential growth along the a-c plane results in the highly [010]-oriented LiMnPO4 by the solvothermal, which afford more channels for Li+ migration by exposing more reaction sites, and the infrared spectrum also reflects the less Mn2+-Li+ antisite defects in the crystal. So the samples show the superior rate performance as well.
引用
收藏
页码:511 / 519
页数:9
相关论文
共 50 条
  • [41] Highly stable Co-doped MnO2 nanoarrays as enhanced cathode materials for aqueous zinc-ion batteries
    Yao, Jia
    Ji, Jie
    Wan, Houzhao
    Duan, Jinxia
    Wang, Xunying
    Lv, Lin
    Ma, Guokun
    Tao, Li
    Wang, Hanbin
    Zhang, Jun
    Wang, Hao
    OXFORD OPEN ENERGY, 2022, 1
  • [42] Facile synthesis of Co-doped VO2 (B) as the Cathode Material for Lithium-Ion Batteries with Enhanced Electrochemical Performance
    Han, Shichang
    Huang, Zhaoming
    Xu, Jing
    Han, Weiwei
    Chen, Tian
    INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2019, 14 (11): : 10410 - 10419
  • [43] Mn and V co-doped Li2FeSiO4 Cathode Materials with Enhanced Electrochemical Properties
    Zhang, Maolin
    Hu, Huicong
    Li, Jing
    Zhang, Dongyan
    Yan, Yangxi
    Li, Zhimin
    INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2019, 14 (12): : 11289 - 11299
  • [44] Electrochemical Studies of Molybdate-Doped LiFePO4 as a Cathode Material in Li-Ion Batteries
    Kim, Ketack
    Kam, Daewoong
    Kim, Yeonjoo
    Kim, Sinwoong
    Kim, Minsoo
    Kim, Hyun-Soo
    JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2013, 13 (05) : 3383 - 3386
  • [45] Coprecipitation synthesis of Co-doped LiMn1.5Ni0.5O4 material as 5 V cathode of Li-ion batteries with huge rate capability for high power applications
    Garhi, Ghita
    Aklalouch, Mohamed
    Favotto, Claude
    Mansori, Mohammed
    Saadoune, Ismael
    JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2020, 873 (873)
  • [46] Enhanced Cycling Performance of Fe-doped LiMn2O4 Truncated Octahedral Cathodes for Li-Ion Batteries
    Lee, Seong-Nam
    Park, Deok-Hye
    Kim, Ji-Hwan
    Moon, Sang-Hyun
    Jang, Jae-Sung
    Kim, Sung-Beom
    Shin, Jae-Hoon
    Park, Yu-Yeon
    Park, Kyung-Won
    CHEMELECTROCHEM, 2022, 9 (11):
  • [47] Enhanced Rate Capability and Cycling Stability of Novel Ammonium Vanadate Materials Used in Aqueous Li-Ion Batteries
    Lashari, Najeeb Ur Rehman
    Zhao, Mingshu
    Zheng, Qingyang
    He, Xinhai
    Ahmed, Irfan
    Su, Zhou
    Tangsee, Songpon
    Song, Xiaoping
    ENERGY & FUELS, 2021, 35 (05) : 4570 - 4576
  • [48] Enhanced cycling performance of Li ion batteries based on Ni-rich cathode materials with LaPO4/Li3PO4 co-modification
    He, Rui
    Wei, Aijia
    Bai, Xue
    Zhang, Lihui
    Li, Xiaohui
    Mu, Jinping
    Zhang, Xi
    Ge, Jianmin
    Liu, Zhenfa
    CERAMICS INTERNATIONAL, 2021, 47 (24) : 34585 - 34594
  • [49] Er-Doped LiNi0.5Mn1.5O4 Cathode Material with Enhanced Cycling Stability for Lithium-Ion Batteries
    Liu, Shanshan
    Zhao, Hongyuan
    Tan, Ming
    Hu, Youzuo
    Shu, Xiaohui
    Zhang, Meiling
    Chen, Bing
    Liu, Xingquan
    MATERIALS, 2017, 10 (08):
  • [50] FePO4-coated Li[Li0.2Ni0.13Co0.13Mn0.54]O2 with improved cycling performance as cathode material for Li-ion batteries
    Wang, Zhong
    Lu, Hua-Quan
    Yin, Yan-Ping
    Sun, Xue-Yi
    Bai, Xiang-Tao
    Shen, Xue-Ling
    Zhuang, Wei-Dong
    Lu, Shi-Gang
    RARE METALS, 2017, 36 (11) : 899 - 904