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Enhancing the cycling stability of Na-ion batteries by bonding MoS2 on assembled carbon-based materials

  • Pin Song
  • , Jun Di
  • , Lixing Kang
  • , Manzhang Xu
  • , Bijun Tang
  • , Jun Xiong
  • , Jiewu Cui
  • , Qingsheng Zeng
  • , Jiadong Zhou
  • , Yongmin He
  • , Qundong Fu
  • , Juan Peng
  • , Shasha Guo
  • , Bo Lin
  • , Jingyu Zhang
  • , Peng Meng
  • , Zheng Liu
  • Nanyang Technological University
  • Jiangsu University
  • Hefei University of Technology
  • Ningxia University

Research output: Contribution to journalArticlepeer-review

13 Scopus citations

Abstract

Room temperature Na-ion batteries (SIBs) show great potential for use as renewable energy storage systems. However, the large-scale application of SIBs has been hindered by the lack of an ideal SIBs anode material. We synthesized MoS2 on carbonized graphene-chitosan (G-C) using the hydrothermal method. The strong interaction between the MoS2 and the G-C greatly improved the electron transport rate and maintained the structural stability of the electrode, which lead to both an excellent rate capability and long cycle stability. The G-C monolith was proven to enhance the electrical conductivity of the composites and served as a matrix for uniformly dispersing active MoS2 nanosheets (NSs), as well as being a buffer material to adapt to changes in volume during the cycle. Serving as an anode material for SIBs, the MoS2-G-C electrode showed good cycling stability (527.3 mAh g−1 at 100 mA g−1 after 200 cycles), excellent rate capability, and a long cycle life (439.1 mAh g−1 at 1A g−1 after 200 cycles).

Original languageEnglish
Pages (from-to)310-317
Number of pages8
JournalNano Materials Science
Volume1
Issue number4
DOIs
StatePublished - Dec 2019
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • Carbon-based materials
  • Long cycle life
  • MoS
  • Na-ion batteries

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