AI Article Synopsis

  • Lithium-sulfur batteries (LSBs) are promising for energy storage due to their high capacity and low-cost sulfur materials, but face issues like poor conductivity and the "shuttle effect."
  • Recent research focuses on improving LSB performance through innovative coating and compositing materials for the sulfur cathode, with a comprehensive review of these advancements.
  • The study analyzes technical challenges in LSBs and suggests future research directions to enhance their practical application.

Article Abstract

Lithium-sulfur batteries (LSBs) are considered next-generation energy storage and conversion solutions owing to their high theoretical specific capacity and the high abundance/low-cost of sulfur-based cathode materials. However, LSBs still encounter significant challenges, including the low conductivities of sulfur-based materials, severe volumetric expansion of sulfur during the discharge process, and the persistent "shuttle effect" of polysulfides. In recent years, a tremendous amount of research has been conducted to address the above challenges by developing coating and compositing materials and corresponding fabrication strategies for sulfur-based cathode materials. In this study, the surface coating, compositing materials, and fabrication methodologies of LSB cathodes are comprehensively reviewed in terms of advanced materials, structure/component characterization, functional mechanisms, and performance validation. Some technical challenges are analyzed in detail, and possible future research directions are proposed to overcome the challenges toward practical applications of lithium-sulfur batteries.

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Source
http://dx.doi.org/10.1002/asia.202400099DOI Listing

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