Integrating manganese oxide nanoparticles with functionalized carbon nanotubes on carbon cloth to serve as a stable anode for high-capacity Li-ion cells

被引:0
作者
Wilson, Merin K. [1 ]
Jacob, Dhanya P. [2 ]
Antony, Aldrin [1 ,2 ]
Jayaraj, M. K. [3 ]
Jayalekshmi, S. [1 ,2 ]
机构
[1] Cochin Univ Sci & Technol, Dept Phys, Cochin 682022, Kerala, India
[2] Cochin Univ Sci & Technol, Ctr Excellence Adv Mat, Cochin 682022, Kerala, India
[3] Univ Calicut, Malappuram 673635, Kerala, India
来源
NEXT ENERGY | 2025年 / 6卷
关键词
Modified anode; Mn; 3; O; 4; nanoparticles; Functionalized carbon nanotubes; Current collector; Stable anode; MN3O4; NANOPARTICLES; CYCLE LIFE; PERFORMANCE; STORAGE; CONVERSION; GRAPHENE; HYBRID; NANOCOMPOSITE; BATTERIES; MICROSPHERES;
D O I
10.1016/j.nxener.2024.100207
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Globally, energy demands are massive, and environmental issues are rising against our sustainability. To maximize the use of renewable energy sources, development of efficient energy storage systems is mandatory. Lithium-ion batteries (LIBs) play an indispensable role in powering portable devices and electric vehicles, due to their high specific capacity and long cycle life. Manganese oxide (Mn3O4) is an environmentally friendly anode active material with high theoretical specific capacity of 936 mAh g-1 for applications in Li-ion cells. In the present work, Mn3O4-functionalized carbon nanotubes (FCNT) nanocomposite, coated on carbon cloth (CC) current collector and termed as Mn3O4-FCNT @CC, is used as the anode material. Li-ion coin cells based on this nanocomposite anode show discharge capacity of 1371 mAh g-1 and charge capacity of 1141 mAh g-1 at current density of 100mAg-1 with initial Coulombic efficiency of 83%. After 70 cycles, the charge-discharge capacities of the cells are 953 mAh g-1 and 958 mAh g-1, respectively, with capacity retention of 91% at current rate of 100mAg-1. These cells are found to deliver reversible charge capacity of 575 mAh g-1 after 100 cycles at 1C (similar to 1 Ag-1) and offer prospects of stable operation at high current rates.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Cobalt oxide thin films for high capacity and stable Li-ion battery anode
    Varghese, Anto P.
    Nair, Shantikumar
    Santhanagopalan, Dhamodaran
    [J]. JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 2019, 23 (02) : 513 - 518
  • [22] FeOx@ carbon yolk/shell nanowires with tailored void spaces as stable and high-capacity anodes for lithium ion batteries
    Li, Xueying
    Ma, Yuanyuan
    Cao, Guozhong
    Qu, Yongquan
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2016, 4 (32) : 12487 - 12496
  • [23] Nanostructured silicon/porous carbon spherical composite as a high capacity anode for Li-ion batteries
    Shao, Dan
    Tang, Daoping
    Mai, Yongjin
    Zhang, Lingzhi
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2013, 1 (47) : 15068 - 15075
  • [24] Binder-free phosphorus-doped MoS2 flexible anode deposited on carbon cloth for high-capacity Li-ion battery applications
    Francis, Mathew K.
    Rajesh, K.
    Bhargav, P. Balaji
    Ahmed, Nafis
    [J]. JOURNAL OF MATERIALS SCIENCE, 2023, 58 (09) : 4054 - 4069
  • [25] High performance Li-ion capacitor based on novel carbon-coated chalcogenide anode
    Lokhande, A. C.
    Hussain, T.
    Shelke, A. R.
    Babar, P. T.
    Kim, J. H.
    Choi, D.
    [J]. JOURNAL OF ENERGY STORAGE, 2022, 50
  • [26] Carbon-coated Si micrometer particles binding to reduced graphene oxide for a stable high-capacity lithium-ion battery anode
    Han, Xiang
    Chen, Huixin
    Zhang, Ziqi
    Huang, Donglin
    Xu, Jianfang
    Li, Cheng
    Chen, Songyan
    Yang, Yong
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2016, 4 (45) : 17757 - 17763
  • [27] Porous SnS Nanorods/Carbon Hybrid Materials as Highly Stable and High Capacity Anode for Li-Ion Batteries
    Cai, Junjie
    Li, Zesheng
    Shen, Pei Kang
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2012, 4 (08) : 4093 - 4098
  • [28] Carbon Coated Helical Carbon Nanotubes used as Anode Materials of Li-ion Battery
    Shao Jin
    Ren Yu-Rong
    Li Guo-Qiang
    Huang Xiao-Bing
    Zhou Gu-Min
    Qu Mei-zhen
    [J]. JOURNAL OF INORGANIC MATERIALS, 2011, 26 (06) : 631 - 637
  • [29] Comparison of oxidized carbon nanotubes for Li-ion storage capacity
    Antic, Aleks
    Barone, Veronica
    Fahlman, Bradley D.
    [J]. JOURNAL OF APPLIED ELECTROCHEMISTRY, 2015, 45 (02) : 161 - 167
  • [30] High Performance Bi-Metallic Manganese Cobalt Oxide/Carbon Nanotube Li-ion Battery Anodes
    Palmieri, Alessandro
    Kashfi-Sadabad, Raana
    Yazdani, Sajad
    Pettes, Michael
    Mustain, William E.
    [J]. ELECTROCHIMICA ACTA, 2016, 213 : 620 - 625