Polysulfide Shuttle Study in the Li/S Battery System
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- Type
- article
- Published
- 2004-11-01
- Cited by
- 1,938
- References
- 6
- Access
- Open access
- OpenAlex
- https://openalex.org/W2013572715
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:96370695
Keywords
Overcharge, Polysulfide, Battery (electricity), Anode, Work (physics)
References
- The Lithium/Sulfur Rechargeable Cell Effects of Electrode Composition and Solvent on Cell Performance
- Rechargeable Lithium Sulfur Battery I. Structural Change of Sulfur Cathode During Discharge and Charge
- Lithium‐Sulfur Battery: Evaluation of Dioxolane‐Based Electrolytes
- Low Temperature Performance of Li/S Batteries
- A Lithium/Dissolved Sulfur Battery with an Organic Electrolyte
- Formation of lithium polysulfides in aprotic media
- Significance of iron status in hair loss in women
Cited by
- Understanding the role of different conductive polymers in improving the nanostructured sulfur cathode performance.
- A Battery Made from a Single Material
- Insight into the positive effect of porous hierarchy in S/C cathodes on the electrochemical performance of Li-S batteries.
- Plane Double-Layer Structure of AC@S Cathode Improves Electrochemical Performance for Lithium-Sulfur Battery
- Block Copolymer Electrolytes: Thermodynamics, Ion Transport, and Use in Solid- State Lithium/Sulfur Cells
- Design and Optimization of Lithium-Ion Batteries for Electric-Vehicle Applications.
- Thermal characterization of Li/sulfur, Li/ S–LiFePO4 and Li/S–LiV3O8 cells using Isothermal Micro-Calorimetry and Accelerating Rate Calorimetry
- High capacity and cyclability of hierarchical MoS2/SnO2 nanocomposites as the cathode of lithium-sulfur battery
- Insights into the morphological changes undergone by the anode in the lithium sulphur battery system
- Sepiolite-sulfur as a high-capacity, high-rate performance, and low-cost cathode material for lithium–sulfur batteries
- Investigation of surface effects through the application of the functional binders in lithium sulfur batteries
- Lithium sulfur battery nail penetration test under load
- Graphene-Enveloped Poly(N-vinylcarbazole)/Sulfur Composites with Improved Performances for Lithium-Sulfur Batteries by A Simple Vibrating-Emulsification Method.
- A Graphene-like Oxygenated Carbon Nitride Material for Improved Cycle-Life Lithium/Sulfur Batteries.
- One-pot self-assembly of graphene/carbon nanotube/sulfur hybrid with three dimensionally interconnected structure for lithium–sulfur batteries
- A new insight on capacity fading of lithium-sulfur batteries: The effect of Li2S phase structure
- Nanomaterials: Science and applications in the lithium–sulfur battery
- Effect of LiNO3 additive and pyrrolidinium ionic liquid on the solid electrolyte interphase in the lithium–sulfur battery
- Graphene oxide: A promising nanomaterial for energy and environmental applications
- Fair performance comparison of different carbon blacks in lithium–sulfur batteries with practical mass loadings – Simple design competes with complex cathode architecture
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