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ACS APPLIED MATERIALS & INTERFACES, ISSN 1944-8244, 08/2016, Volume 8, Issue 31, pp. 20120 - 20127
Sodium oxygen batteries currently stimulate extensive research due to their high theoretical energy density and improved operational stability when compared to... 
ELECTROLYTE | CATHODES | Na-O-2 batteries | MATERIALS SCIENCE, MULTIDISCIPLINARY | SODIUM-OXYGEN BATTERIES | NANOSCIENCE & NANOTECHNOLOGY | LI-O-2 BATTERIES | CELL CHEMISTRY | discharge stability | NAO2 | AIR BATTERIES | REDOX MEDIATOR | LITHIUM | Na−O2 batteries | ENERGY STORAGE
Journal Article
Journal of Power Sources, ISSN 0378-7753, 04/2014, Volume 251, pp. 466 - 469
A carbon nanotube paper without any binders and additives was directly used as the catalyst for Na–O batteries. Corresponding electrochemical performances were... 
Carbon nanotube paper | Na–O2 battery | Binder-free | Cathode | Na-O | battery | Scanning electron microscopy | Diffraction | Carbon nanotubes | Paper | Electric batteries | Discharge | Cathodes | Crystal structure
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 12/2017, Volume 56, Issue 49, pp. 15728 - 15732
Aprotic sodium–O2 batteries require the reversible formation/dissolution of sodium superoxide (NaO2) on cycling. Poor cycle life has been associated with... 
Na–O2 batteries | reaction mechanisms | electrochemistry | singlet oxygen | parasitic reactions | batteries | Na–O | Electrochemistry | Electrochemical reactions | Electrolytes | Superoxide | Batteries | Active oxygen | Cycles | Oxygen | Chemistry | Side reactions | Singlet oxygen | Disproportionation | Sodium | Pollutants | Communications | Communication
Journal Article
Nanotechnology, ISSN 0957-4484, 09/2018, Volume 29, Issue 47, p. 475401
Journal Article
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, ISSN 1433-7851, 12/2017, Volume 56, Issue 49, pp. 15728 - 15732
Aprotic sodium-O-2 batteries require the reversible formation/dissolution of sodium superoxide (NaO2) on cycling. Poor cycle life has been associated with... 
ELECTROLYTE | electrochemistry | Na-O-2 batteries | INDUCED DISPROPORTIONATION | STABILITY | SUPEROXIDE ION | reaction mechanisms | parasitic reactions | CHEMISTRY, MULTIDISCIPLINARY | DISCHARGE PRODUCTS | singlet oxygen | LI-AIR BATTERIES | LITHIUM | NONAQUEOUS LI-O-2 | MOLECULAR-OXYGEN
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 12/2017, Volume 56, Issue 49, pp. 15769 - 15769
The biggest hurdle facing the development of Na–O2 batteries is parasitic chemistry. In their Communication on page 15728  ff., S. A. Freunberger et al. show... 
Na–O2 batteries | reaction mechanisms | electrochemistry | singlet oxygen | parasitic reactions | Cycles | Oxygen | Singlet oxygen | Batteries | Sodium | Pollutants
Journal Article
Nano Letters, ISSN 1530-6984, 02/2018, Volume 18, Issue 2, pp. 1280 - 1289
Although in sodium–oxygen (Na–O2) batteries show promise as high-energy storage systems, this technology is still the subject of intense fundamental research,... 
Na-O | real time TEM visualization | battery | liquid electrochemical TEM | parasitic product formation | solution-mediated mechanism
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 01/2019, Volume 772, pp. 693 - 702
Sodium–oxygen (Na−O ) batteries are being extensively studied because of their higher energy efficiency and lower cost compared to those of lithium–oxygen... 
Na–O2 batteries | Nanoneedle arrays | Cathode | NiCo2O4
Journal Article
Electrochimica Acta, ISSN 0013-4686, 11/2015, Volume 182, pp. 809 - 814
Two types of sodium-air cells, i.e., nonaqueous and mixed aqueous-nonaqueous (abbreviated as ‘aqueous’) cells, have been compared to elucidate factors limiting... 
Nonaqueous and aqueous electrolytes | Nanoporous gold | Ambient atmosphere | Na-air/Na-O2 batteries | Solid electrolyte | Na-air/Na-O | batteries | ELECTROCHEMISTRY | NAO2 | Na-air/Na-O-2 batteries | CHEMISTRY | LITHIUM | OXYGEN BATTERIES | Electrochemical reactions | Electrolytes | Carbonates | Batteries
Journal Article
Advanced Functional Materials, ISSN 1616-301X, 08/2018, Volume 28, Issue 35, pp. 1801904 - n/a
Na‐O2 batteries have attracted extensive attention as promising candidates for large‐scale energy storage due to their ultrahigh theoretical energy density.... 
Na anode | O2− crossover | side reactions | Na‐O2 batteries | Na-O | crossover | batteries | Superoxide | Batteries | Electrodes | Cycles | Anodic protection | Flux density | Carbon | Anodes | Dendritic structure | Crossovers | Energy storage
Journal Article
Carbon Energy, ISSN 2637-9368, 12/2019, Volume 1, Issue 2, pp. 141 - 164
Na‐O2 batteries are advantageous as the candidates of next‐generation electric vehicles due to their ultrahigh theoretical energy density and have attracted... 
carbon materials | sodium anode | air electrode | nonaqueous Na‐O2 batteries
Journal Article
Chem, ISSN 2451-9294, 12/2019, Volume 5, Issue 12, pp. 3096 - 3126
Antimony-based materials are promising anode candidates for sodium-ion batteries (NIBs) due to their high theoretical capacity of 660 mAh g (Na Sb). In fact,... 
full-cell | antimony | Na-O2 battery | anode | sea water battery | SDG7: Affordable and clean energy | Na-ion battery | ELECTROCHEMICAL PROPERTIES | ANODE MATERIAL | SB NANOPARTICLES | SODIUM-ION | CARBON NANOFIBERS | PYROPHOSPHATE CATHODE | HOLLOW NANOSPHERES | CHEMISTRY, MULTIDISCIPLINARY | ELECTRICAL ENERGY-STORAGE | RECHARGEABLE LITHIUM | LITHIUM-ION
Journal Article
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