Nitrogen-Doped Carbon Nanotube Arrays with High Electrocatalytic Activity for Oxygen Reduction
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Summary
It is reported that vertically aligned nitrogen-containing carbon nanotubes (VA-NCNTs) can act as a metal-free electrode with a much better electrocatalytic activity, long-term operation stability, and tolerance to crossover effect than platinum for oxygen reduction in alkaline fuel cells.
- Type
- article
- Published
- 2009-02-06
- Cited by
- 6,608
- References
- 26
- OpenAlex
- https://openalex.org/W2009901571
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:206517252
Keywords
Platinum, Carbon nanotube, Materials science, Electrode, Carbon fibers
References
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- The effects of the lengths and orientations of single-walled carbon nanotubes on the electrochemistry of nanotube-modified electrodes
- Effect of Li ions on reduction of Fe oxides in aqueous alkaline medium
- Supportless Pt and PtPd nanotubes as electrocatalysts for oxygen-reduction reactions.
Cited by
- Carbon nanotube architectures with metallic nanoparticles towards energy applications
- Nitrogen-doped ordered mesoporous graphitic arrays with high electrocatalytic activity for oxygen reduction.
- Theory, synthesis, and oxygen reduction catalysis of Fe-porphyrin-like carbon nanotube.
- Highly active and durable core-corona structured bifunctional catalyst for rechargeable metal-air battery application.
- Strongly coupled inorganic/nanocarbon hybrid materials for advanced electrocatalysis.
- Graphene nanoelectrodes: fabrication and size-dependent electrochemistry.
- Space-confinement-induced synthesis of pyridinic- and pyrrolic-nitrogen-doped graphene for the catalysis of oxygen reduction.
- High‐Performance Electrocatalysts for Oxygen Reduction Derived from Cobalt Porphyrin‐Based Conjugated Mesoporous Polymers
- Nitrogen-doped graphene/carbon nanotube hybrids: in situ formation on bifunctional catalysts and their superior electrocatalytic activity for oxygen evolution/reduction reaction.
- Synthesis of iron oxide/partly graphitized carbon composites as a high-efficiency and low-cost cathode catalyst for microbial fuel cells.
- N-doped graphene: an alternative carbon-based matrix for highly efficient detection of small molecules by negative ion MALDI-TOF MS.
- Boosting activation of oxygen molecules on C60 fullerene by boron doping.
- Helical and Dendritic Unzipping of Carbon Nanotubes: A Route to Nitrogen-Doped Graphene Nanoribbons.
- Nonstoichiometric Oxides as Low-Cost and Highly-Efficient Oxygen Reduction/Evolution Catalysts for Low-Temperature Electrochemical Devices.
- N-Doped graphene frameworks with superhigh surface area: excellent electrocatalytic performance for oxygen reduction.
- Fe-N-Doped Carbon Capsules with Outstanding Electrochemical Performance and Stability for the Oxygen Reduction Reaction in Both Acid and Alkaline Conditions.
- The Effect of KOH Treatment on the Chemical Structure and Electrocatalytic Activity of Reduced Graphene Oxide Materials.
- A General Approach to Preferential Formation of Active Fe-Nx Sites in Fe-N/C Electrocatalysts for Efficient Oxygen Reduction Reaction.
- Cobalt Nanoparticle-Embedded Porous Carbon Nanofibers with Inherent N- and F-Doping as Binder-Free Bifunctional Catalysts for Oxygen Reduction and Evolution Reactions.
- A molecular approach to an electrocatalytic hydrogen evolution reaction on single-layer graphene.
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