Nanostructured cobalt oxide clusters in mesoporous silica as efficient oxygen-evolving catalysts.
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Summary
Nanostructured Co(3)O(4) clusters in mesoporous silica are the first example of a nanometer-sized multielectron catalyst made of a first-row transition-metal oxide that evolves oxygen from water efficiently.
- Type
- article
- Published
- 2009-02-01
- Cited by
- 743
- References
- 36
- Access
- Open access
- OpenAlex
- https://openalex.org/W205555520
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:9766098
Keywords
Catalysis, Cobalt, Mesoporous silica, Mesoporous material, Cobalt oxide
References
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- Where Water Is Oxidized to Dioxygen: Structure of the Photosynthetic Mn4Ca Cluster
- Electrocatalysis of Cathodic Hydrogen and Anodic Oxygen Evolution in Alkaline Water Electrolysis by in-Situ Activation Procedures
- Visible light-driven water oxidation by Ir oxide clusters coupled to single Cr centers in mesoporous silica.
- General Synthesis of Ordered Crystallized Metal Oxide Nanoarrays Replicated by Microwave‐Digested Mesoporous Silica
- Triblock copolymer syntheses of mesoporous silica with periodic 50 to 300 angstrom pores
- Bidentate dicarboxylate capping groups and photosensitizers control the size of IrO2 nanoparticle catalysts for water oxidation.
- The anodic evolution of oxygen on Co3O4 film electrodes in alkaline solutions
- In Situ Spectroscopy of Water Oxidation at Ir Oxide Nanocluster Driven by Visible TiOCr Charge-transfer Chromophore in Mesoporous Silica
- Sauerstoffentwicklung aus Wasser durch Redoxkatalyse
- Oxygen Evolution from Water via Redox Catalysis
- Novel electrocatalysts for generating oxygen from alkaline water electrolysis
- Photocatalytic Oxidation of Water by Silica-Supported Tris(4,4‘-dialkyl-2,2‘-bipyridyl)ruthenium Polymeric Sensitizers and Colloidal Iridium Oxide
- The anodic characteristics of manganese dioxide electrodes prepared by thermal decomposition of manganese nitrate
- Roles of Rh/Cr2O3 (Core/Shell) Nanoparticles Photodeposited on Visible-Light-Responsive (Ga1-xZnx)(N1-xOx) Solid Solutions in Photocatalytic Overall Water Splitting
- Self-assembly of active IrO2 colloid catalyst on an ITO electrode for efficient electrochemical water oxidation.
- Synthesis of nanowire and mesoporous low-temperature LiCoO2 by a post-templating reaction.
- Photocatalytic Water Oxidation in a Buffered Tris(2,2‘-bipyridyl)ruthenium Complex-Colloidal IrO2 System
- CRC Handbook of Chemistry and Physics
Cited by
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- Stimuli-responsive DNA-functionalized nano-/microcontainers for switchable and controlled release.
- Water Oxidation by the [Co4O4(OAc)4(py)4](+) Cubium is Initiated by OH(-) Addition.
- Artificial photosynthesis and the splitting of water to generate hydrogen
- Advancing the frontiers in nanocatalysis, biointerfaces, and renewable energy conversion by innovations of surface techniques.
- Anchoring of cobalt hydroxide catalysts on nanozeolite crystals for photocatalytic water oxidation
- Stable Cobalt Nanoparticles and Their Monolayer Array as an Efficient Electrocatalyst for Oxygen Evolution Reaction.
- NiCoO2 nanowires grown on carbon fiber paper for highly efficient water oxidation
- Formation of cobalt oxide clusters on oxygen modified graphene
- Perspectives of in situ/operando resonant inelastic X-ray scattering in catalytic energy materials science
- Engineering Nanoporous Iron(III) Oxide into an Effective Water Oxidation Electrode
- Biologically engineering nanostructures to maximize energy, electron, and ion transport
- NOVEL DESIGN OF FUNCTIONALIZED CARBON NANOTUBE ELECTRODES AND MEMBRANES FOR FUEL CELLS AND ENERGY STORAGE
- Spectroscopic Characterization of the Water-Oxidation Intermediates in the Ru-Based Catalysts for Artificial Photosynthesis
- Theoretical investigation of solar energy conversion and water oxidation catalysis
- Perfluorinated Cobalt Phthalocyanine Effectively Catalyzes Water Electrooxidation
- Electrode Materials and Artificial Photosynthetic Systems
- On the Fluctuations that Order and Frustrate Liquid Water
- Cobalt selenide: a versatile cocatalyst for photocatalytic water oxidation with visible light
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