A vapor-liquid-solid mechanism for in-situ deposition of ultra-small hollow MoS2 nanoparticles in N-doped carbon foam as an anode of lithium-ion batteries

被引:15
|
作者
Baheri, Yalda Tarpoudi [1 ]
Hedayati, Mohammad Ali [1 ]
Maleki, Mahdi [1 ]
Karimian, Hossein [2 ]
机构
[1] Iran Univ Sci & Technol IUST, Sch Met & Mat Engn, Narmak, Tehran 16846, Iran
[2] Golestan Univ, Fac Engn, Dept Chem Engn, Aliabad Katoul 4513815739, Iran
关键词
Carbon foam; MoS; 2; In -situ CVD; Vapor -liquid -solid (VLS) growth; Lithium -ion batteries (LIBs); Nanocapsules; Nanocrucibles; Hollow spheres; EXCELLENT ELECTROCHEMICAL PERFORMANCES; LAYERED MOS2; FIBER CLOTH; GRAPHENE; NANOSHEETS; INTERLAYER; CAPACITY; GROWTH;
D O I
10.1016/j.est.2023.107682
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
Although molybdenum disulfide (MoS2) has been nominated as a high theoretical capacity anode material for lithium-ion batteries (LIBs), intrinsic low electrical conductivity and massive volume expansion are significant obstacles to its application investment. Herein, a novel synthesis method has been developed to prepare the carbon foam/MoS2 (CF/MoS2) nanocomposite through an in-situ vapor-liquid-solid (VLS) mechanism to over-come its inherent disadvantages as a LIBs anode. A newfound MoS-polyHIPE, polyHIPE containing Mo and S precursors, was synthesized to provide the reaction confinement spaces. The in-situ reaction between sodium molybdate melt and gaseous sulfur products derived from decomposing the S precursor in the highly nanoporous polymer during low-temperature pyrolysis (700 degrees C) led to the precipitation of MoS2 nanoparticles in the carbon backbone. The X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and Raman analysis demon-strated the formation of 1T/2H-MoS2. The TEM and HAADF-STEM micrographs revealed the ultra-small MoS2 nanoparticles with a hollow spherical shape well-distributed in the carbon framework. The unique composite structure of the homogeneously dispersed tiny nanoparticles in a nanoporous matrix caused fast diffusion of lithium ions, separated MoS2 nanoparticles without aggregation, and structural stability. The prepared composite exhibited a high specific capacity of 1051 mAh g-1 after 100 charge/discharge cycles. The composite also exhibited a significant specific capacity of 600 mAh g-1 at the high current density of 3C as an anode material for LIBs.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] In-situ conversion growth of carbon-coated MoS2/N-doped carbon nanotubes as anodes with superior capacity retention for sodium-ion batteries
    Liu, Yadong
    Tang, Cheng
    Sun, Weiwei
    Zhu, Guanjia
    Du, Aijun
    Zhang, Haijiao
    Journal of Materials Science and Technology, 2022, 102 : 8 - 15
  • [32] In-situ conversion growth of carbon-coated MoS2/N-doped carbon nanotubes as anodes with superior capacity retention for sodium-ion batteries
    Liu, Yadong
    Tang, Cheng
    Sun, Weiwei
    Zhu, Guanjia
    Du, Aijun
    Zhang, Haijiao
    JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2022, 102 : 8 - 15
  • [33] In-situ conversion growth of carbon-coated MoS2/N-doped carbon nanotubes as anodes with superior capacity retention for sodium-ion batteries
    Yadong Liu
    Cheng Tang
    Weiwei Sun
    Guanjia Zhu
    Aijun Du
    Haijiao Zhang
    JournalofMaterialsScience&Technology, 2022, 102 (07) : 8 - 15
  • [34] CoSe/Co nanoparticles wrapped by in situ grown N-doped graphitic carbon nanosheets as anode material for advanced lithium ion batteries
    Zhou, Ying
    Tian, Ran
    Duan, Huanan
    Wang, Kaifeng
    Guo, Yiping
    Li, Hua
    Liu, Hezhou
    JOURNAL OF POWER SOURCES, 2018, 399 : 223 - 230
  • [35] Synthesis of in-situ graphene encapsulated N-doped MoC nanoparticles as high-rate and long lifespan anode for lithium-ion storage
    Meng, Lingyi
    Wang, Chao
    MATERIALS LETTERS, 2019, 252 : 282 - 285
  • [36] MoS2 nanosheets inlaid in 3D fibrous N-doped carbon spheres for lithium-ion batteries and electrocatalytic hydrogen evolution reaction
    Wang, Xin
    Fei, Siming
    Huang, Shoushuang
    Wu, Chenghao
    Zhao, Junru
    Chen, Zhiwen
    Uvdal, Kajsa
    Hu, Zhangjun
    CARBON, 2019, 150 : 363 - 370
  • [37] SnSb alloy nanoparticles embedded in N-doped porous carbon nanofibers as a high-capacity anode material for lithium-ion batteries
    Yuan, Zhaoxia
    Dong, Linxi
    Gao, Qili
    Huang, Zhenguo
    Wang, Luwen
    Wang, Gaofeng
    Yu, Xuebin
    JOURNAL OF ALLOYS AND COMPOUNDS, 2019, 777 : 775 - 783
  • [38] Li3VO4 nanoparticles in N-doped carbon with porous structure as an advanced anode material for lithium-ion batteries
    Xu, Xuena
    Niu, Feier
    Wang, Chunsheng
    Li, Yunjie
    Zhao, Chenglong
    Yang, Jian
    Qian, Yitai
    CHEMICAL ENGINEERING JOURNAL, 2019, 370 : 606 - 613
  • [39] Sn-Co Nanoalloys Encapsulated in N-Doped Carbon Hollow Cubes as a High-Performance Anode Material for Lithium-Ion Batteries
    Yang, Juan
    Zhang, Jiaming
    Zhou, Xiangyang
    Ren, Yongpeng
    Jiang, Min
    Tang, Jingjing
    ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (41) : 35216 - 35223
  • [40] NiM (Sb, Sn)/N-doped hollow carbon tube as high-rate and high-capacity anode for lithium-ion batteries
    Weng, Chaocang
    Huang, Sumei
    Lu, Ting
    Li, Junfeng
    Li, Jinliang
    Li, Jiabao
    Pan, Likun
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2023, 652 : 208 - 217