Li-O2 and Li-S batteries with high energy storage.
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Summary
The energy that can be stored in Li-air and Li-S cells is compared with Li-ion; the operation of the cells is discussed, as are the significant hurdles that will have to be overcome if such batteries are to succeed.
- Type
- article
- Published
- 2011-12-15
- Cited by
- 8,547
- References
- 125
- OpenAlex
- https://openalex.org/W2151207643
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:22521049
Keywords
Electrification, Energy storage, Electronics, Key (lock), Nanotechnology
References
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- Encyclopedia of electrochemical power sources
- Batteries for Portable Devices
- Anodic Behavior of Lithium in Aqueous Electrolytes IV . Influence of Temperature
- Rechargeable Lithium Sulfur Battery II. Rate Capability and Cycle Characteristics
- Handbook Of Batteries
- Lithium batteries : science and technology
- Anodic Behavior of Lithium in Aqueous Electrolytes I . Transient Passivation
- Lithium Sulfur Battery Oxidation/Reduction Mechanisms of Polysulfides in THF Solutions
- Rechargeable Lithium/TEGDME- LiPF6 ∕ O2 Battery
- PVC DISULFIDE AS CATHODE MATERIALS FOR SECONDARY LITHIUM BATTERIES
- Rechargeable Lithium Sulfur Battery I. Structural Change of Sulfur Cathode During Discharge and Charge
- Issues and challenges facing rechargeable lithium batteries
- Sulfur-carbon nano-composite as cathode for rechargeable lithium battery based on gel electrolyte
- Investigation on the charging process of Li2O2-based air electrodes in Li–O2 batteries with organic carbonate electrolytes
- Electrochemical properties of lithium sulfur cells using PEO polymer electrolytes prepared under three different mixing conditions
- Preparation and enhanced electrochemical properties of nano-sulfur/poly(pyrrole-co-aniline) cathode material for lithium/sulfur batteries
- Lithium–Air Batteries Using SWNT/CNF Buckypapers as Air Electrodes
- Lithium anode for lithium-air secondary batteries
Cited by
- Li-O2 battery with a dimethylformamide electrolyte.
- Strongly coupled inorganic/nanocarbon hybrid materials for advanced electrocatalysis.
- Understanding the role of different conductive polymers in improving the nanostructured sulfur cathode performance.
- Integrating a redox-coupled dye-sensitized photoelectrode into a lithium–oxygen battery for photoassisted charging
- An advanced lithium-air battery exploiting an ionic liquid-based electrolyte.
- A new method to prevent degradation of lithium-oxygen batteries: reduction of superoxide by viologen.
- Nanoporous Ru as a carbon- and binder-free cathode for Li-O2 batteries.
- Nonstoichiometric Oxides as Low-Cost and Highly-Efficient Oxygen Reduction/Evolution Catalysts for Low-Temperature Electrochemical Devices.
- Vertically aligned graphitic carbon nanosheet arrays fabricated from graphene oxides for supercapacitors and Li-O2 batteries.
- Ultrahigh Surface Area Three-Dimensional Porous Graphitic Carbon from Conjugated Polymeric Molecular Framework
- A Highly Active Low Voltage Redox Mediator for Enhanced Rechargeability of Lithium–Oxygen Batteries
- Analytical Multimode Scanning and Transmission Electron Imaging and Tomography of Multiscale Structural Architectures of Sulfur Copolymer-Based Composite Cathodes for Next-Generation High-Energy Density Li–S Batteries
- Tuning the Morphology of Li2O2 by Noble and 3d metals: A Planar Model Electrode Study for Li-O2 Battery.
- Enhanced Cycle Stability of Rechargeable Li-O2 Batteries by the Synergy Effect of a LiF Protective Layer on the Li and DMTFA Additive.
- Multiscale characterization of a lithium/sulfur battery by coupling operando X-ray tomography and spatially-resolved diffraction
- Protected Lithium‐Metal Anodes in Batteries: From Liquid to Solid
- Hierarchically Porous Multilayered Carbon Barriers for High-Performance Li-S Batteries.
- Insight into the positive effect of porous hierarchy in S/C cathodes on the electrochemical performance of Li-S batteries.
- Free-Standing Three-Dimensional CuCo2S4 Nanosheet Array with High Catalytic Activity as an Efficient Oxygen Electrode for Lithium-Oxygen Batteries.
- Efficiency of 3D‐Ordered Macroporous La0.6Sr0.4Co0.2Fe0.8O3 as an Electrocatalyst for Aprotic Li‐O2 Batteries
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