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Phosphorus flame retardant modified aramid nanofiber separator for advanced safety lithium-sulfur batteries

  • Jianwei Liu
  • , Lei Zhu
  • , Jianan Wang
  • , Qinqin Chai
  • , Shiyi Sun
  • , Xin Chen
  • , Xue Wang
  • , Yating Zhang
  • , Wei Yan
  • Xi'an Jiaotong University
  • Xi'an University of Science and Technology
  • Ltd. in Ziyang County
  • Weinan Teachers University
  • Ltd.

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

Safety concerns have perennially impeded the large-scale implementation of high-energy-density storage systems. Nevertheless, because the intrinsic drawbacks of the commercial polyolefin separator are poor thermal stability and low flammability with a large thermal contribution, the development of an advanced separator that solves the above questions is imminent. In this work, gradient flame-retardant aramid nanofiber separators (T-PMIA) were synthesized by a single-step electrospinning method. Benefiting from the feature of “Aramid” fibers, plentiful multilevel beaded structure and the functional groups P and -P-O, the T-PMIA separator not only guarantees a rapid self-extinguishing feature (self-extinguishing time: 0.20 s) and impressive mechanical properties (tensile strength of up to 12.58 MPa and puncture force of 0.94 N) but also effectively suppresses the polysulfide shuttle and lithium dendrite growth. Accordingly, the T-PMIA separator still showed a stable cycling performance (maintain 901.7 mAg−1 after 100 cycles) even at high temperature (80 °C). This simple separator strategy offers a highly competitive option for the large-scale production of high-safety lithium-sulfur (Li[sbnd]S) batteries.

Original languageEnglish
Article number112030
JournalJournal of Energy Storage
Volume92
DOIs
StatePublished - 1 Jul 2024

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

  • Aramid nanofibers
  • Flame-retardant
  • Lithium-sulfur batteries
  • Shuttle effect
  • Triphenyl phosphate

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