A metal-free bifunctional electrocatalyst for oxygen reduction and oxygen evolution reactions.
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Summary
A mesoporous carbon foam co-doped with nitrogen and phosphorus that has a large surface area and good electrocatalytic properties for both ORR and OER and is tested as an air electrode for primary and rechargeable Zn-air batteries.
- Type
- article
- Published
- 2015-04-06
- Cited by
- 1,974
- References
- 73
- OpenAlex
- https://openalex.org/W4254736414
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:205454041
Keywords
Bifunctional, Electrocatalyst, Materials science, Catalysis, Aerogel
References
- Nitrogen-doped ordered mesoporous graphitic arrays with high electrocatalytic activity for oxygen reduction.
- Highly active and durable core-corona structured bifunctional catalyst for rechargeable metal-air battery application.
- Space-confinement-induced synthesis of pyridinic- and pyrrolic-nitrogen-doped graphene for the catalysis of oxygen reduction.
- Nitrogen-doped graphene/carbon nanotube hybrids: in situ formation on bifunctional catalysts and their superior electrocatalytic activity for oxygen evolution/reduction reaction.
- RRDE study of oxygen reduction on Pt nanoparticles inside Nafion®: H2O2 production in PEMFC cathode conditions
- Microstructure and corrosion resistance of phytic acid conversion coatings for magnesium alloy
- Covalent hybrid of spinel manganese-cobalt oxide and graphene as advanced oxygen reduction electrocatalysts.
- Co3O4 nanoparticles decorated carbon nanofiber mat as binder-free air-cathode for high performance rechargeable zinc-air batteries.
- Nitrogen and Oxygen Dual‐Doped Carbon Hydrogel Film as a Substrate‐Free Electrode for Highly Efficient Oxygen Evolution Reaction
- Vertically aligned BCN nanotubes as efficient metal-free electrocatalysts for the oxygen reduction reaction: a synergetic effect by co-doping with boron and nitrogen.
- Co3O4 nanoparticle-modified MnO2 nanotube bifunctional oxygen cathode catalysts for rechargeable zinc-air batteries.
- Mechanisms of Oxygen Reduction Reaction on Nitrogen-Doped Graphene for Fuel Cells
- Advanced zinc-air batteries based on high-performance hybrid electrocatalysts
- CoMn2O4 nanoparticles anchored on nitrogen-doped graphene nanosheets as bifunctional electrocatalyst for rechargeable zinc–air battery
- Origin of the Electrocatalytic Oxygen Reduction Activity of Graphene-Based Catalysts: A Roadmap to Achieve the Best Performance
- N-doped graphene as catalysts for oxygen reduction and oxygen evolution reactions: Theoretical considerations
- Ag/C nanoparticles as an cathode catalyst for a zinc-air battery with a flowing alkaline electrolyte
- Nitrogen-doped carbon nanomaterials as non-metal electrocatalysts for water oxidation
- Nanostructures of polyaniline doped with inorganic acids
- Influence of phytic acid concentration on performance of phytic acid conversion coatings on the AZ91D magnesium alloy
Cited by
- Ultrahigh Surface Area Three-Dimensional Porous Graphitic Carbon from Conjugated Polymeric Molecular Framework
- Fe-N-Doped Carbon Capsules with Outstanding Electrochemical Performance and Stability for the Oxygen Reduction Reaction in Both Acid and Alkaline Conditions.
- Transition Metal Carbide Complex Architectures for Energy-Related Applications.
- Increased activity of nitrogen-doped graphene-like carbon sheets modified by iron doping for oxygen reduction.
- Microwave-assisted synthesis of porous Mn2O3 nanoballs as bifunctional electrocatalyst for oxygen reduction and evolution reaction
- Defective titanium dioxide single crystals exposed by high-energy 001 facets for efficient oxygen reduction
- Graphene Nanosheets Based Cathodes for Lithium-Oxygen Batteries
- Controlled Synthesis and Functionalization of Vertically-Aligned Carbon Nanotubes for Multifunctional Applications
- Carbon-based electrocatalysts for advanced energy conversion and storage
- Hierarchical Metal-Free Nitrogen-Doped Porous Graphene/Carbon Composites as an Efficient Oxygen Reduction Reaction Catalyst.
- Iron Carbide Nanoparticles Encapsulated in Mesoporous Fe-N-Doped Graphene-Like Carbon Hybrids as Efficient Bifunctional Oxygen Electrocatalysts.
- Catalysis with two-dimensional materials and their heterostructures.
- Switching effective oxygen reduction and evolution performance by controlled graphitization of a cobalt–nitrogen–carbon framework system
- Nanowires assembled from MnCo2O4@C nanoparticles for water splitting and all-solid-state supercapacitor
- Identification of catalytic sites for oxygen reduction and oxygen evolution in N-doped graphene materials: Development of highly efficient metal-free bifunctional electrocatalyst
- Mesoporous materials for energy conversion and storage devices
- Nitrogen-doped activated graphene/SWCNT hybrid for oxygen reduction reaction
- Dual-doped mesoporous carbon synthesized by a novel nanocasting method with superior catalytic activity for oxygen reduction
- Development of new electrode materials for lithium ion batteries and lithium oxygen batteries
- Highly Reversible Zinc-Ion Intercalation into Chevrel Phase Mo6S8 Nanocubes and Applications for Advanced Zinc-Ion Batteries.
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