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Journal Article
Advanced Materials, ISSN 0935-9648, 10/2017, Volume 29, Issue 37, pp. 1703185 - n/a
Rechargeable flexible solid Zn‐air battery, with a high theoretical energy density of 1086 Wh kg−1, is among the most attractive energy technologies for future... 
bifunctional electrocatalysts | oxygen reduction reaction | defect engineering | zinc‐air batteries | zinc-air batteries | Zinc compounds | Energy efficiency | Batteries | Graphene | Energy technology | Flux density | Zinc-oxygen batteries | Metal air batteries | Reaction kinetics | Chemical evolution | Scaffolds | Open circuit voltage | Defects | Rechargeable batteries | Wearable technology
Journal Article
Advanced Materials, ISSN 0935-9648, 11/2018, Volume 30, Issue 46, p. n/a
In article number 1803372, Min Gyu Kim, Sang Kyu Kwak, Jaephil Cho, and co‐workers synthesize a Ni46Co40Fe14 ternary‐nanoalloy‐based oxygen electrocatalyst for... 
oxygen evolution reaction | Zn–air batteries | supercritical reactions | oxygen reduction reaction | ternary nanoalloys | Zinc products | Zinc | Batteries | Transition metals | Nanoalloys | Heat treatment | Zinc-oxygen batteries | Selective adsorption | Metal air batteries | X ray spectra | Charge transfer | Rechargeable batteries
Journal Article
Journal Article
Advanced Materials, ISSN 0935-9648, 01/2018, Volume 30, Issue 4, p. n/a
Knittable fiber‐shaped zinc–air batteries based on atomically thin mesoporous Co3O4 layers strongly coupled with nitrogen‐doped reduced graphene oxide... 
cobalt oxides | atomically thin hybrid nanosheets | knittable | wearable electronics | zinc–air batteries | Cobalt | Zinc products | Batteries | Thin films | Electronic devices | Power supplies | Zinc-oxygen batteries | Catalysts | Metal air batteries | Cobalt oxides | Nanostructure | Catalysis | Nitrogen
Journal Article