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Advanced materials (Weinheim), ISSN 0935-9648, 03/2014, Volume 26, Issue 9, pp. 1378 - 1386
...‐reduction activity in acidic, alkaline, and non‐aqueous electrolytes and superior cathode performance in Li‐O2 batteries. 
lithium‐oxygen batteries | metal‐organic frameworks | oxygen reduction reaction | graphene | graphene tubes | lithium-oxygen batteries | metal-organic frameworks | Graphene | Nanotechnology | Batteries
Journal Article
Journal of power sources, ISSN 0378-7753, 05/2011, Volume 196, Issue 10, pp. 4436 - 4444
► We describe important limiting factors that affect the performance of lithium–oxygen batteries. ► We emphasize relationships that form between various limiting factors... 
Energy density | Lithium–oxygen battery | Electrolyte | Reaction kinetics | Electrode structure | Lithium-oxygen battery | Physical Sciences | Chemistry | Materials Science | Technology | Materials Science, Multidisciplinary | Electrochemistry | Chemistry, Physical | Energy & Fuels | Science & Technology | Obstacles | Oxidants | Lithium | Batteries | Electric batteries | Storage batteries | Constraining | Cathodes
Journal Article
Advanced materials (Weinheim), ISSN 0935-9648, 01/2018, Volume 30, Issue 1, p. n/a
Li–O2 batteries have received much attention due to their extremely large theoretical energy density... 
redox mediators | soluble catalysts | additives | electrolytes | lithium–oxygen batteries | Batteries | Charging | Side effects | Flux density | Redox reactions | Catalysts | Metal air batteries | Oxidation | Energy efficiency | Power efficiency | Catalysis | Rechargeable batteries
Journal Article