Reactive template-induced core-shell FeCo@C microspheres as multifunctional electrocatalysts for rechargeable zinc-air batteries.
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Summary
This approach provides a new way to design structures with controlled morphology and excellent multifunctional electrocatalytic activity and exhibits excellent performances for the electrochemical oxygen reduction reaction (ORR) and hydrogen evolution reaction (HER), which are comparable to those of commercial Pt/C catalyst.
- Type
- article
- Published
- 2018-09-20
- Cited by
- 42
- References
- 48
- OpenAlex
- https://openalex.org/W29923591
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:49314176
Keywords
Computer science, Medicine
References
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- Alginate derived Co/N doped hierarchical porous carbon microspheres for efficient oxygen reduction reaction
- Leaf-like 2D nanosheet as efficient oxygen reduction reaction catalyst for Zn-air battery
- Efficient Oxygen Reduction Catalysts of Porous Carbon Nanostructures Decorated with Transition Metal Species
- FeCoOX/FeCoPX nanoparticles encapsulated N, S-doped porous carbon microspheres as catalysts for the elimination of organic pollutants
- Atomically dispersed Fe-N-C derived from dual metal-organic frameworks as efficient oxygen reduction electrocatalysts in direct methanol fuel cells
- Coupled nanocomposite Co5.47N–Co3Fe7 inlaid in a tremella-like carbon framework as a highly efficient multifunctional electrocatalyst for oxygen transformation and overall water splitting
- Enhanced oxygen evolution performance of spinel Fe0.1Ni0.9Co2O4/Activated carbon composites
- Multifunctional inorganic nanomaterials for energy applications.
- CoP/N‐Doped Carbon Nanowire Derived from Co‐Based Coordination Polymer as Efficient Electrocatalyst toward Oxygen Evolution Reaction
- Ideal design of air electrode—A step closer toward robust rechargeable Zn–air battery
- Core-double shell templated Fe/Co anchored carbon nanospheres for oxygen reduction
- Co/FeC core-nitrogen doped hollow carbon shell structure with tunable shell-thickness for oxygen evolution reaction.
- Co-based coordination polymer-derived Co3S4 nanotube decorated with NiMoO4 nanosheets for effective oxygen evolution reaction
- Surface-oxidized Fe–Co–Ni alloys anchored to N-doped carbon nanotubes as efficient catalysts for oxygen reduction reaction
- Strongly stabilized integrated bimetallic oxide of Fe2O3-MoO3 Nano-crystal entrapped N-doped graphene as a superior oxygen reduction reaction electrocatalyst
- Recent progress in cobalt-based carbon materials as oxygen electrocatalysts for zinc-air battery applications
- Carbon nitride decorated nitrogen doped graphene hollow spheres loaded Ni/Co and corresponding oxides nanoparticles as reversible air electrode catalysts for rechargeable zinc-air batteries
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