55 results on '"Ortiz-Vitoriano, Nagore"'
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2. Mechanism of ORR and OER in non-aqueous electrolytes: general discussion
3. Unlocking the Potential of Aprotic Sodium-Air Batteries
4. Controlled nanoscale deposition of discharge products in Na-O2 batteries by inducing nucleation on edge-defected graphene cathode
5. Benchmarking La‐Based Perovskites as Bifunctional Cathodes For Primary and Rechargeable Zinc−Air Batteries with Biopolymer‐Based Electrolyte
6. Agarose-based Gel Electrolytes for Sustainable Primary and Secondary Zinc-Air Batteries
7. High performance carbon free bifunctional air electrode for advanced zinc-air batteries
8. Flexible Gel Polymer Electrolytes Based on Carboxymethyl Cellulose Blended with Polyvinyl Alcohol or Polyacrylic Acid for Zinc‐Air Batteries
9. Bio-based ether solvent and ionic liquid electrolyte for sustainable sodium–air batteries
10. Recent progress, advances, and future prospects in Na–O2 batteries
11. Driving the sodium-oxygen battery chemistry towards the efficient formation of discharge products: The importance of sodium superoxide quantification
12. Unveiling the Impact of the Cations and Anions in Ionic Liquid/Glyme Hybrid Electrolytes for Na–O2 Batteries
13. Essential data for industrially relevant development of bifunctional cathodes and biopolymer electrolytes in solid-state zinc–air secondary batteries
14. Tunable multi-doped carbon nanofiber air cathodes based on a poly(ionic liquid) for sodium oxygen batteries with diglyme/ionic liquid-based hybrid electrolytes
15. Alternative anodes for Na–O2 batteries: the case of the Sn4P3 alloy
16. Designing Perovskite Oxides for Solid Oxide Fuel Cells
17. Unveiling the Role of Tetrabutylammonium and Cesium Bulky Cations in Enhancing Na‐O 2 Battery Performance
18. Dopant and Current Rate Dependence on the Structural Evolution of P2‐Na 2/3 Mn 0.8 Zn 0.1 M 0.1 O 2 ( M =Cu, Ti): An Operando Study
19. P2-Na2/3Mn0.8M0.1M′0.1O2 (M = Zn, Fe and M′ = Cu, Al, Ti): A Detailed Crystal Structure Evolution Investigation
20. Biphasic P2/O3-Na2/3Li0.18Mn0.8Fe0.2O2: a structural investigation
21. Boosting the Performance of Graphene Cathodes in Na–O2 Batteries by Exploiting the Multifunctional Character of Small Biomolecules
22. Unravelling the Role of Speciation in Glyme:Ionic Liquid Hybrid Electrolytes for Na−O 2 Batteries
23. Singlet oxygen formation in Na O2 battery cathodes catalyzed by ammonium Brönsted acid
24. Unraveling the Effect of Singlet Oxygen on Metal-O2 Batteries: Strategies Toward Deactivation
25. An Overview of Engineered Graphene‐Based Cathodes: Boosting Oxygen Reduction and Evolution Reactions in Lithium– and Sodium–Oxygen Batteries
26. Highly Homogeneous Sodium Superoxide Growth in Na–O2 Batteries Enabled by a Hybrid Electrolyte
27. High Performance Na-O2 Batteries and Printed Microsupercapacitors Based on Water-Processable, Biomolecule-Assisted Anodic Graphene
28. High Coulombic Efficiency Na–O2 Batteries Enabled by a Bilayer Ionogel/Ionic Liquid
29. Designing a manganese oxide bifunctional air electrode for aqueous chloride-based electrolytes in secondary zinc-air batteries
30. Controlling the Three‐Phase Boundary in Na–Oxygen Batteries: The Synergy of Carbon Nanofibers and Ionic Liquid
31. (Invited) Unravelling Solvation Phenomena in Glyme-Based Electrolytes for Na-O2 Batteries
32. High performance P2 sodium layered oxides: an in-depth study into the effect of rationally selected stoichiometry
33. Redox mediators: a shuttle to efficacy in metal–O2 batteries
34. Unravelling the impact of electrolyte nature on Sn4P3/C negative electrodes for Na-ion batteries
35. P2 manganese rich sodium layered oxides: Rational stoichiometries for enhanced performance
36. Elucidating the Impact of Sodium Salt Concentration on the Cathode–Electrolyte Interface of Na–Air Batteries
37. Tuning Graphene Pore Size for Improved Performance in Na-O2 Batteries
38. Layered P2–O3 sodium-ion cathodes derived from earth abundant elements
39. Pathways towards high performance Na–O2 batteries: tailoring graphene aerogel cathode porosity & nanostructure
40. Understanding the charge/discharge mechanisms and passivation reactions in Na-O 2 batteries
41. High performance manganese-based layered oxide cathodes: overcoming the challenges of sodium ion batteries
42. Sodium–Oxygen Battery: Steps Toward Reality
43. ChemInform Abstract: Carbon‐Free Cathodes: A Step Forward in the Development of Stable Lithium—Oxygen Batteries
44. Carbon-Free Cathodes: A Step Forward in the Development of Stable Lithium-Oxygen Batteries
45. Rate-Dependent Nucleation and Growth of NaO2 in Na–O2 Batteries
46. Monitoring the Location of Cathode-Reactions in Li-O2Batteries
47. Chemical Instability of Dimethyl Sulfoxide in Lithium–Air Batteries
48. Monitoring the Location of Cathode Reactions in Li-O2systems
49. In situ monitoring of discharge/charge processes in Li–O2 batteries by electrochemical impedance spectroscopy
50. R-MnO2 nanourchins: a promising catalyst in Li-O2 batteries
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