Investigation on the charging process of Li2O2-based air electrodes in Li–O2 batteries with organic carbonate electrolytes
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- Type
- article
- Published
- 2011-04-15
- Cited by
- 232
- References
- 14
- OpenAlex
- https://openalex.org/W1965177090
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93394240
Keywords
Electrolyte, Dimethyl carbonate, Propylene carbonate, Electrode, Fourier transform infrared spectroscopy
References
- Effects of Nonaqueous Electrolytes on the Performance of Lithium/Air Batteries
- Characterization of the Lithium/Oxygen Organic Electrolyte Battery
- The behaviour of lithium electrodes in propylene and ethylene carbonate: Te major factors that influence Li cycling efficiency
- Syntheses and characterization of lithium alkyl mono- and dicarbonates as components of surface films in Li-ion batteries.
- Elucidating the Mechanism of Oxygen Reduction for Lithium-Air Battery Applications
- An O2 cathode for rechargeable lithium batteries: The effect of a catalyst
- Identification of Surface Films Formed on Lithium in Propylene Carbonate Solutions
- Rechargeable Li-Air Batteries with Carbonate-Based Liquid Electrolytes
- A Polymer Electrolyte‐Based Rechargeable Lithium/Oxygen Battery
- Carbon-supported manganese oxide nanocatalysts for rechargeable lithium–air batteries
- Identification of Li Battery Electrolyte Degradation Products Through Direct Synthesis and Characterization of Alkyl Carbonate Salts
- Rechargeable LI2O2 electrode for lithium batteries.
- Alpha-MnO2 nanowires: a catalyst for the O2 electrode in rechargeable lithium batteries.
- Theoretical Energy Density of Li–Air Batteries
Cited by
- Li-O2 battery with a dimethylformamide electrolyte.
- An advanced lithium-air battery exploiting an ionic liquid-based electrolyte.
- Li-O2 Cells Based on Hierarchically Structured Porous α-MnO2 Catalyst and an Imidazolium Based Ionic Liquid Electrolyte
- Investigation of polymers used in lithium oxygen batteries as electrolyte and cathode materials
- Rechargeable lithium-air batteries using mathematical modelling
- Investigation on the Cyclability of Lithium-Oxygen Cells in a Confined Potential Window using Cathodes with Pre-filled Discharge Products.
- Accelerated Electrochemical Decomposition of Li2O2 under X-ray Illumination
- Towards A Better Understanding of Lithium Ion Local Environment in Pure, Binary and Ternary Mixtures of Carbonate Solvents : A Numerical Approach
- Carbon microspheres air electrode for rechargeable Li–O2 batteries
- A review of cathode materials and structures for rechargeable lithium–air batteries
- A Discussion on the Activity Origin in Metal-Free Nitrogen-Doped Carbons For Oxygen Reduction Reaction and their Mechanisms.
- Modelling of electrolyte degradation and cycling behaviour in a lithium–air battery
- Ether Based Electrolyte, LiB(CN)4 Salt and Binder Degradation in the Li-O2 Battery Studied by Hard X-ray Photoelectron Spectroscopy (HAXPES)
- Gold nanoparticles anchored reduced graphene oxide as catalyst for oxygen electrode of rechargeable Li–O2 cells
- New insights about the stability of lithium bis(trifluoromethane)sulfonimide-tetraglyme as electrolyte for Li–O2 batteries
- Electrochemical and electron microscopic characterization of Super-P based cathodes for Li–O2 batteries
- Reaction mechanisms for the limited reversibility of Li–O2 chemistry in organic carbonate electrolytes
- Materials challenges in rechargeable lithium-air batteries
- Humidity effect on electrochemical performance of Li–O2 batteries
- Reactions in the rechargeable lithium-O2 battery with alkyl carbonate electrolytes.
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