Carbon Coating and Zn2+ Doping of Magnetite Nanorods for Enhanced Electrochemical Energy Storage

被引:24
|
作者
Hu, Chenxi [1 ]
Guo, Shimei [1 ]
Lu, Guixia [1 ]
Fu, Ya [1 ]
Liu, Jiurong [1 ,1 ]
Wei, Huige [2 ]
Yan, Xingru [2 ]
Wang, Yiran [2 ]
Guo, Zhanhu [2 ]
机构
[1] Shandong Univ, Sch Mat Sci & Engn, Jinan 250061, Shandong, Peoples R China
[2] Lamar Univ, Dan F Smith Dept Chem Engn, Integrated Composites Lab, Beaumont, TX 77705 USA
基金
美国国家科学基金会;
关键词
magnetite nanorods; carbon coating; Zn2+-doping; cycling stability; rate capability; LITHIUM-ION BATTERIES; DOPED TIN OXIDES; ANODE MATERIAL; PERFORMANCE; FE3O4; ALPHA-FE2O3; STABILITY; COMPOSITE; NANOCOMPOSITES; NANOCRYSTALS;
D O I
10.1016/j.electacta.2014.10.014
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Zn2+-doped magnetite (Fe3O4) nanorods with carbon coating of controllable thickness (Zn-Fe3O4@C) were prepared from lab-made Zn2+-doped Fe2O3 nanorods which were simultaneously coated with and reduced by carbon during the carbonization process using pyrrole as the carbon precursor. The asprepared Zn-Fe3O4@ C nanocomposites were evaluated as anode materials for lithium-ion batteries (LIBs). The results show that the Zn-Fe3O4@C nanorods with 2.5 mol% Zn2+ doping demonstrated a reversible capacity of 949.1 mAh g (1), compared to only 315.4 and 235.5 mAh g (1) for Fe2O3 and Fe3O4@C nanorods, respectively, after 60 cycles at a current density of 100 mA g (1). The Zn-Fe3O4@C nanocomposite electrodes also exhibited better cycling and rate performances than the corresponding Fe2O3 and Fe3O4@C nanorods. The superior performances witnessed in Zn-Fe3O4@C are attributed to the Zn2+ doping and the carbon coating, which have efficiently enhanced the electrical conductivity and lithium ion diffusion. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:118 / 126
页数:9
相关论文
共 50 条
  • [1] Enhanced electrochemical performance of barium hexaferrite nanoplates by Zn2+ doping serving as anode materials
    Hu, Chenxi
    Qiu, Song
    Lu, Guixia
    Cao, Huili
    Lv, Hailong
    Guo, Shimei
    Liu, Jiurong
    RSC ADVANCES, 2015, 5 (87): : 70749 - 70757
  • [2] Enhancing the lithium storage performance of α-Ni(OH)2 with Zn2+ doping
    Jin, Xiuying
    Li, Yanwei
    Yao, Jinhuan
    Luo, Kang
    Tan, Jinhai
    JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2022, 922
  • [3] Carbon coating on metal oxide materials for electrochemical energy storage
    Liu, Ruiqi
    Xu, Shusheng
    Shao, Xiaoxuan
    Wen, Yi
    Shi, Xuerong
    Hu, Jing
    Yang, Zhi
    NANOTECHNOLOGY, 2021, 32 (50)
  • [4] Graphene coating magnetite/N-doping carbon hybrid composites and its lithium storage performance
    Xu, Wenjun
    Xue, Weidong
    Zhang, Yu
    Zhang, Bin
    Wang, Yuan
    Zhao, Rui
    MATERIALS LETTERS, 2018, 231 : 47 - 50
  • [5] Effect of Zn2+ doping on corrosion resistance of polyaniline film prepared by electrochemical synthesis
    Hao, Jianjun
    Li, Xin
    Wang, Hao
    Fuhe Cailiao Xuebao/Acta Materiae Compositae Sinica, 2014, 31 (04): : 1117 - 1120
  • [6] Impact of Zn2+ Doping on the Structural, Morphological and Photodiode Properties of V2O5 Nanorods
    N. Senthil Kumar
    J. H. Chang
    Mon-Shu Ho
    Babu Balraj
    S. Chandrasekar
    B. Mohanbabu
    M. Gowtham
    Donghui Guo
    K. Mohanraj
    Journal of Inorganic and Organometallic Polymers and Materials, 2021, 31 : 1066 - 1078
  • [7] Electrochemical Synthesis of Magnetite Nanoparticles and their Doping with Cu2+ Cations and Surface Coating with Polyethylenimine
    Sabour, Behrouz
    Kheirifam, Mina
    ANALYTICAL & BIOANALYTICAL ELECTROCHEMISTRY, 2019, 11 (01): : 99 - 107
  • [8] Electrochemical adsorption of Zn2+ in wastewater by modified activated carbon felt.
    Liang, Hong-Xu
    Zhao, Xin-Kun
    Song, Bin
    Sun, Qian-Qian
    Jiao, Gao-Jie
    Zheng, Ji-Yong
    She, Diao
    Zhongguo Huanjing Kexue/China Environmental Science, 2018, 38 (04): : 1336 - 1345
  • [9] Enhancing Zn2+ Storage Capability of Cobalt Manganese Oxide by In-Situ Nanocarbon Coating
    He Jinjun
    Zhang Haozhe
    Liu Xiaoqing
    Lu Xihong
    ACTA CHIMICA SINICA, 2020, 78 (10) : 1069 - 1075
  • [10] Gradient Concentration Refilling of N Stabilizes Oxygen Vacancies for Enhanced Zn2+ Storage
    Wang, Ming
    Zhao, Guangyu
    Bai, Xiaoming
    Yu, Weijian
    Zhao, Chenghao
    Gao, Zhenren
    Lyu, Pengbo
    Chen, Zhaoyu
    Zhang, Naiqing
    ADVANCED ENERGY MATERIALS, 2023, 13 (38)