Chem. J. Chinese Universities ›› 2022, Vol. 43 ›› Issue (3): 20210632.doi: 10.7503/cjcu20210632

• Physical Chemistry • Previous Articles     Next Articles

Fabrication of Lithium-sulfur Battery Cathode with Radiation Crosslinked Low Molecular Weight of Polyacrylonitrile and the Mechanism of Sulfur Storage

ZHANG Shiyu1, HE Runhe1, LI Yongbing1, WEI Shijun1, ZHANG Xingxiang1,2()   

  1. 1.School of Material Science and Engineering,Tiangong University,Tianjin 300387,China
    2.Tianjin Municipal Key Lab of Advanced Fiber and Energy Storage Technology,Tianjin 300387,China
  • Received:2021-09-01 Online:2022-03-10 Published:2021-12-16
  • Contact: ZHANG Xingxiang E-mail:zhangpolyu@aliyun.com
  • Supported by:
    the New Materials Research Key Program of Tianjin, China(16ZXCLGX00090);the National Key Research and Development Program of China(2016YFB0303000)

Abstract:

By the method of γ-ray irradiation cross-linking heteromorphic polyacrylonitrile(PAN)fibers, the pro? blem of melt collapse in the semi-carbonization of low-molecular-weight polyacrylonitrile was solved and the semi- carbonization stability of PAN was impoved. The irradiation cross-linking mechanism was first determined by Fourier transform infrared spectra, elemental analysis and nuclear magnetic resonance spectra. At the same time, according to the relationship between the different degree of crosslinking produced by irradiation and the change of sulfur load after PAN vulcanization, the sulfur storage mechanism of vulcanized polyacrylonitrile(SPAN) for lithium-sulfur battery cathode material was discussed. Using Raman spectra, X-ray photoelectron spectra and other analytical methods, from the perspective of cross-linking, the reaction position of S in SPAN was demonstrated, and the tertiary carbon on the PAN main chain was the active site for chemical bonding with S. It provides a new basis for exploring the SPAN structure. The increase in the degree of cross-linking promotes the electrochemical stability of the SPAN cathode material formed after vulcanization, and the capacity retention rate can be increased to 98%.

Key words: Sulfurized polyacrylonitrile, Cathode material of lithium-sulfur battery, γ-Ray irradiation cross- linking, Sulfur storage mechanism

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