Modification of LixNi1-yCoyO2 by applying a surface coating of MgO

被引:123
|
作者
Kweon, HJ
Kim, SJ
Park, DG [1 ]
机构
[1] Sookmyung Womens Univ, Dept Chem, Seoul 140742, South Korea
[2] Samsung Display Devices, Chunan 330300, South Korea
关键词
lithium ion battery; cathode material; coating; crystallization; MgO; LiNiO2;
D O I
10.1016/S0378-7753(00)00368-2
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
Mg(OH)(2) is coated on the surface of semi-crystalline LixNi1-yCoyO2. By further heating the coated sample, the surface is modified. This lowers the initial discharge capacity and improves the cycle-reversibility of a test lithium-ion cell, which was made with surface-modified LixNi1-yCoyO2 as the cathode material. (C) 2000 Elsevier Science S.A. All rights reserved.
引用
收藏
页码:255 / 261
页数:7
相关论文
共 50 条
  • [31] Surface modification of ZrO2-10 wt. % CaO plasma sprayed coating
    Iwaszko, J.
    Kudla, K.
    BULLETIN OF THE POLISH ACADEMY OF SCIENCES-TECHNICAL SCIENCES, 2016, 64 (04) : 937 - 942
  • [32] Origin of Surface Coating Effect for MgO on LiCoO2 to Improve the Interfacial Reaction between Electrode and Electrolyte
    Orikasa, Yuki
    Takamatsu, Daiko
    Yamamoto, Kentaro
    Koyama, Yukinori
    Mori, Shinichiro
    Masese, Titus
    Mori, Takuya
    Minato, Taketoshi
    Tanida, Hajime
    Uruga, Tomoya
    Ogumi, Zempachi
    Uchimoto, Yoshiharu
    ADVANCED MATERIALS INTERFACES, 2014, 1 (09):
  • [33] Atomic layer deposition enabled MgO surface coating on porous TiO2 for improved CO2 photoreduction
    Feng, Xuhui
    Pan, Fuping
    Zhao, Huilei
    Deng, Wei
    Zhang, Peng
    Zhou, Hong-Cai
    Li, Ying
    APPLIED CATALYSIS B-ENVIRONMENTAL, 2018, 238 : 274 - 283
  • [34] Modification of Nickel Sulfide by Surface Coating with TiO2 and ZrO2 for Improvement of Cycle Capability
    Takeuchi, Tomonari
    Sakaebe, Hikari
    Kageyama, Hiroyuki
    Handa, Katsumi
    Sakai, Tetsuo
    Tatsumi, Kuniaki
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2009, 156 (11) : A958 - A966
  • [35] A dual-modification strategy for P2-type layered oxide via bulk Mg/Ti co-substitution and MgO surface coating for sodium ion batteries
    Wang, Jun-Zhou
    Teng, Ying-Xue
    Su, Guan-Qiao
    Bao, Shuo
    Lu, Jin-Lin
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2022, 608 : 3013 - 3021
  • [36] Surface modification of Fe2O3 and MgO nanoparticles with agrowastes for the treatment of chlorosis in Glycine max
    Nazeer, Abdul Azeez
    Udhayakumar, Sreelakshmi
    Mani, Saranpriya
    Dhanapal, Mothilal
    Vijaykumar, Sudarshana Deepa
    NANO CONVERGENCE, 2018, 5
  • [37] Surface modification of Fe2O3 and MgO nanoparticles with agrowastes for the treatment of chlorosis in Glycine max
    Abdul Azeez Nazeer
    Sreelakshmi Udhayakumar
    Saranpriya Mani
    Mothilal Dhanapal
    Sudarshana Deepa Vijaykumar
    Nano Convergence, 5
  • [38] Chemical modification of MgO(001) surface by utilizing energy decomposition analyses for the purpose of CO2 adsorption
    Takahashi, H
    Okuda, K
    Nitta, T
    BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 2000, 73 (02) : 315 - 319
  • [39] Effect of MgO Surface Modification on the TiO2 Nanowires Electrode for Self-Powered UV Photodetectors
    Ni, Shiming
    Guo, Fengyun
    Wang, Dongbo
    Liu, Gang
    Xu, Zhikun
    Kong, Lingping
    Wang, Jinzhong
    Jiao, Shujie
    Zhang, Yong
    Yu, Qngjiang
    Luo, Jiawei
    Wang, Bao
    Li, Zhenghao
    Zhang, ChengCheng
    Zhao, Liancheng
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2018, 6 (06): : 7265 - 7272
  • [40] Modification of Quartz Ceramics by Applying a Sol-Gel Composition of MgO–Al2O3–ZrO2–SiO2 System
    S. K. Evstrop’ev
    V. M. Volynkin
    A. S. Saratovskii
    D. P. Danilovich
    V. V. Demidov
    K. V. Dukel’skii
    D. V. Bulyga
    S. O. Sysolyatin
    Russian Journal of Applied Chemistry, 2023, 96 : 190 - 197