Understanding of Low‐Porosity Sulfur Electrode for High‐Energy Lithium–Sulfur Batteries

Abstract: The lithium–sulfur (Li–S) battery is a promising technology for large‐scale energy storage and vehicle electrification due to its high theoretical energy density and low cost. Reducing the sulfur cathode porosity has been identified recently as a viable strategy for improving the cell practical energy density and minimizing pore‐filling electrolytes to extend cell life at lean electrolyte conditions. Direct use of a low‐porosity cathode for Li–S battery results in poor electrode wetting, nonuniform electrode reactions, and thus early cell failure. To understand and mitigate the barriers associated with the use of low‐porosity electrodes, multiscale modeling is performed to predict electrode wetting, electrolyte diffusion, and their impacts on sulfur reactions in Li–S cells by explicitly considering the electrode wettability impacts and electrode morphologies. The study elucidates the critical impact of low tortuosity and large channel pore design for promoting electrode wetting and species diffusion. It is suggested that the secondary particle size should be comparable with the electrode thickness to effectively promote electrolyte wettability and sulfur reactivity. This study provides new insights into the low‐porosity electrode material and designs and is expected to accelerate the development of practical high‐energy Li–S batteries.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Understanding of Low‐Porosity Sulfur Electrode for High‐Energy Lithium–Sulfur Batteries ; day:20 ; month:02 ; year:2023 ; extent:8
Advanced energy materials ; (20.02.2023) (gesamt 8)

Creator
Fu, Yucheng
Singh, Rajesh K.
Feng, Shuo
Liu, Jun
Xiao, Jie
Bao, Jie
Xu, Zhijie
Lu, Dongping

DOI
10.1002/aenm.202203386
URN
urn:nbn:de:101:1-2023022014193798465488
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
14.08.2025, 10:44 AM CEST

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Associated

  • Fu, Yucheng
  • Singh, Rajesh K.
  • Feng, Shuo
  • Liu, Jun
  • Xiao, Jie
  • Bao, Jie
  • Xu, Zhijie
  • Lu, Dongping

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