Plasma-Engraved Co3 O4 Nanosheets with Oxygen Vacancies and High Surface Area for the Oxygen Evolution Reaction.
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Summary
An efficient Co3 O4 -based OER electrocatalyst is designed by a plasma-engraving strategy, which not only produced higher surface area, but also generated oxygen vacancies on Co 3 O4 surface with more Co(2+) formed to improve the electronic conductivity and create more active defects for OER.
- Type
- article
- Published
- 2016-04-18
- Cited by
- 1,831
- References
- 25
- OpenAlex
- https://openalex.org/W2302107358
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:27811369
Keywords
Electrocatalyst, Engraving, Oxygen, Oxygen evolution, Catalysis
References
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Cited by
- Phosphorus-doped cobalt-iron oxyhydroxide with untrafine nanosheet structure enable efficient oxygen evolution electrocatalysis.
- The role of oxygen vacancies in water oxidation for perovskite cobalt oxide electrocatalysts: are more better?
- Electrochemical etching of α-cobalt hydroxide for improvement of oxygen evolution reaction
- N-Doped graphene-supported Co@CoO core–shell nanoparticles as high-performance bifunctional electrocatalysts for overall water splitting
- Topotactic Consolidation of Monocrystalline CoZn Hydroxides for Advanced Oxygen Evolution Electrodes.
- Intrinsic ferromagnetic coupling in Co3O4 quantum dots activatedby graphene hybridization
- From channeled to hollow CoO octahedra: controlled growth, structural evolution and energetic applications
- Electrochemical Partial Reforming of Ethanol into Ethyl Acetate Using Ultrathin Co3O4 Nanosheets as a Highly Selective Anode Catalyst
- Ultrasmall diiron phosphide nanodots anchored on graphene sheets with enhanced electrocatalytic activity for hydrogen production via high-efficiency water splitting
- Microwave Combustion for Modification of Transition Metal Oxides
- Hydrothermal Synthesis of Metal-Polyphenol Coordination Crystals and Their Derived Metal/N-doped Carbon Composites for Oxygen Electrocatalysis.
- Facile synthesis of ZnCo2O4 mesoporous structures with enhanced electrocatalytic oxygen evolution reaction properties
- MOF-Derived Zn-Doped CoSe2 as an Efficient and Stable Free-Standing Catalyst for Oxygen Evolution Reaction.
- A robust water oxidation electrocatalyst from amorphous cobalt–iron bimetallic phytate nanostructures
- In-situ growth of highly uniform and single crystalline Co3O4 nanocubes on graphene for efficient oxygen evolution
- Efficient photoelectrochemical water splitting over Co3O4 and Co3O4/Ag composite structure
- Iron-embedded nitrogen doped carbon frameworks as robust catalyst for oxygen reduction reaction in microbial fuel cells
- Enhanced electrocatalytic hydrogen evolution in graphene via defect engineering and heteroatoms co-doping
- Recycled LiCoO2 in spent lithium-ion battery as an oxygen evolution electrocatalyst
- A nitrogen-doped ordered mesoporous carbon/graphene framework as bifunctional electrocatalyst for oxygen reduction and evolution reactions
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