JOURNAL ARTICLE

Anodes for Rechargeable Lithium‐Sulfur Batteries

Abstract

With the significant progress that has been made toward the development of cathode materials and electrolytes in lithium‐sulfur (Li‐S) batteries in recent years, the stability of the anode in Li‐S batteries has become one of the more urgent challenges in order to reach long‐term stability of Li‐S batteries. In Li‐S batteries, a passivation layer is easily formed on the metallic Li anode surface because of the presence of polysulfides and electrolyte additives. Although the passivation layer on the Li metal anode can significantly suppress Li dendrite growth and improve the safety of Li‐S batteries, continuous corrosion of the Li metal anode eventually leads to battery failure due to the increased cell impedance and the depletion of electrolyte. Here, the recent developments on the protection of the Li metal anode in Li‐S batteries are reviewed. Various strategies used to minimize the corrosion of Li anodes and to reduce its impedance increase are analyzed. Other alternative anodes used in sulfur‐based rechargeable batteries are also discussed.

Keywords:
Anode Passivation Materials science Electrolyte Cathode Battery (electricity) Corrosion Lithium metal Metal Lithium–sulfur battery Lithium (medication) Layer (electronics) Inorganic chemistry Metallurgy Nanotechnology Electrode Chemistry

Metrics

492
Cited By
32.75
FWCI (Field Weighted Citation Impact)
158
Refs
1.00
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Advanced Battery Materials and Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advancements in Battery Materials
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced Battery Technologies Research
Physical Sciences →  Engineering →  Automotive Engineering

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