Ethanothermal Synthesis of Octahedral-Shaped Doped Mn2O3 Single Crystals as a Precursor for LiMn2O4 Spinel Cathodes in Lithium-Ion Batteries

被引:6
|
作者
Park, Hongjun [1 ,2 ]
Manthiram, Arumugam [1 ,2 ]
机构
[1] Univ Texas Austin, Mat Sci & Engn Program, Austin, TX 78712 USA
[2] Univ Texas Austin, Texas Mat Inst, Austin, TX 78712 USA
关键词
MICROWAVE-SOLVOTHERMAL SYNTHESIS; MANGANESE OXIDE; LOW-TEMPERATURE; ELECTROCHEMICAL PERFORMANCE; HYDROTHERMAL SYNTHESIS; MN; POLYMORPHS; STABILITY; CAPACITY; MN3O4;
D O I
10.1021/acs.jpcc.3c02468
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
Micrometer-sized particles of single-crystalline octahedral-shaped Mn2O3 doped with various elements (Al, Ti, Ni, and Zr) have been obtained by an ethanothermal synthesis at 150 degrees C. The doping of other element(s) into the Mn2O3 framework is characterized by energy-dispersive X-ray spectroscopy and Xray powder diffraction. With Ni as a dopant, however, the particle morphology changed dramatically to spheres. The doped Mn2O3 with octahedral morphologies was employed as a precursor for the preparation of doped spinel LiMn2O4 cathodes for lithium-ion batteries. The doped samples exhibit enhanced cycle life, with the Al and Ti codoped sample displaying similar to 90% capacity retention after 100 cycles at C/3 rate in full cells with a graphite anode. In addition, replacing 25 vol % of ethanol with water as the solvent for the solvothermal synthesis gives a rod-shaped gamma-MnOOH structure instead of alpha-Mn2O3, which will be attractive for future studies of unique physicochemical properties originating from the shape.
引用
收藏
页码:8515 / 8522
页数:8
相关论文
共 50 条
  • [1] The role of oxygen vacancies in the performance of LiMn2O4 spinel cathodes for lithium-ion batteries
    Wang, Jing
    Xing, Haiyang
    Hou, Wenqiang
    Xu, Youlong
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2023, 25 (28) : 18903 - 18914
  • [2] Preparation and characterization of spinel LiMn2O4 nanorods as lithium-ion battery cathodes
    Chen Ze-hua
    Huang Ke-long
    Liu Su-qin
    Wang Hai-yan
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2010, 20 (12) : 2309 - 2313
  • [3] Preparation and characterization of spinel LiMn2O4 nanorods as lithium-ion battery cathodes
    陈泽华
    黄可龙
    刘素琴
    王海燕
    Transactions of Nonferrous Metals Society of China, 2010, 20 (12) : 2309 - 2313
  • [4] Electrochemical Performance Ni Doped Spinel LiMn2O4 Cathode for Lithium Ion Batteries
    Cui YongLi
    Bao WenJing
    Yuan Zheng
    Zhuang QuanChao
    Sun Zhi
    RENEWABLE AND SUSTAINABLE ENERGY, PTS 1-7, 2012, 347-353 : 290 - 300
  • [5] Surface Modification of Spinel LiMn2O4 with Y2O3 for Lithium-ion Battery
    Bai, Ying
    Wu, Feng
    Yang, Hua-tong
    Zhong, Yu
    Wu, Chuan
    CHEMICAL ENGINEERING AND MATERIAL PROPERTIES, PTS 1 AND 2, 2012, 391-392 : 1069 - +
  • [6] Hydrothermal synthesis of Mg-doped LiMn2O4 spinel cathode materials with high cycling performance for lithium-ion batteries
    Luo, Fenglan
    Xie, Hongyan
    Jin, Huixin
    Han, Yelin
    INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2022, 17 (06):
  • [7] Synthesis of Mn3O4 nanowires and their transformation to LiMn2O4 polyhedrons, application of LiMn2O4 as a cathode in a lithium-ion battery
    Zhang, Xing
    Xing, Zheng
    Yu, Yang
    Li, Qianwen
    Tang, Kaibin
    Huang, Tao
    Zhu, Yongchun
    Qian, Yitai
    Chen, Dong
    CRYSTENGCOMM, 2012, 14 (04): : 1485 - 1489
  • [8] Truncated octahedral LiMn2O4 cathode for high-performance lithium-ion batteries
    Hwang, Bo-Mi
    Kim, Si-Jin
    Lee, Young-Woo
    Park, Han-Chul
    Kim, Da-Mi
    Park, Kyung-Won
    MATERIALS CHEMISTRY AND PHYSICS, 2015, 158 : 138 - 143
  • [9] Controllable Synthesis of Co-Doped Spinel LiMn2O4 Nanotubes as Cathodes for Li-Ion Batteries
    Zhang, Li-Xin
    Wang, Yuan-Zhong
    Jiu, Hong-Fang
    Wang, Ya-Lei
    Sun, Yi-Xin
    Li, Zhenzhong
    ELECTRONIC MATERIALS LETTERS, 2014, 10 (02) : 439 - 444
  • [10] LiMn2O4 cathodes with F anion doping for superior performance of lithium-ion batteries
    Wan, Zijing
    Jiang, Xiaoxue
    Xu, Dongwei
    Luo, Xiaobing
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2022, 24 (36) : 21638 - 21644