Enhancing Hydrogen Evolution Activity in Water Splitting by Tailoring Li+-Ni(OH)2-Pt Interfaces
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Summary
It is found that a controlled arrangement of nanometer-scale Ni(OH)2 clusters on platinum electrode surfaces manifests a factor of 8 activity increase in catalyzing the hydrogen evolution reaction relative to state-of-the-art metal and metal-oxide catalysts.
- Type
- article
- Published
- 2011-12-02
- Cited by
- 2,645
- References
- 45
- OpenAlex
- https://openalex.org/W2030228841
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:40338489
Keywords
Water splitting, Hydrogen, Chemistry, Materials science, Radiochemistry
References
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Cited by
- Cluster size effects of platinum oxide as active sites in hydrogen evolution reactions.
- A general salt-templating method to fabricate vertically aligned graphitic carbon nanosheets and their metal carbide hybrids for superior lithium ion batteries and water splitting.
- Confining Sub‐Nanometer Pt Clusters in Hollow Mesoporous Carbon Spheres for Boosting Hydrogen Evolution Activity
- Holey Pt Nanosheets on NiFe-Hydroxide Laminates: Synergistically Enhanced Electrocatalytic 2D Interface toward Hydrogen Evolution Reaction.
- N-doped carbon@Ni–Al2O3 nanosheet array@graphene oxide composite as an electrocatalyst for hydrogen evolution reaction in alkaline medium
- Stable Cobalt Nanoparticles and Their Monolayer Array as an Efficient Electrocatalyst for Oxygen Evolution Reaction.
- Sulfur and nitrogen self-doped carbon nanosheets derived from peanut root nodules as high-efficiency non-metal electrocatalyst for hydrogen evolution reaction
- Influence of the electrolyte composition on the activity and selectivity of electrocatalytic centers
- Three-Dimensional Crystalline/Amorphous Co/Co3O4 Core/Shell Nanosheets as Efficient Electrocatalysts for the Hydrogen Evolution Reaction.
- Local atomic structure modulations activate metal oxide as electrocatalyst for hydrogen evolution in acidic water
- Bifunctional enhancement of oxygen reduction reaction activity on Ag catalysts due to water activation on LaMnO3 supports in alkaline media
- Anion exchange membrane water electrolyzer with an ultra-low loading of Pt-decorated Ni electrocatalyst
- Ball-milling MoS2/carbon black hybrid material for catalyzing hydrogen evolution reaction in acidic medium
- When Small is Big: The Role of Impurities in Electrocatalysis
- Hydrogen evolution by a metal-free electrocatalyst
- Face the Edges: Catalytic Active Sites of Nanomaterials
- Effect of the Transition Metal on Metal–Nitrogen–Carbon Catalysts for the Hydrogen Evolution Reaction
- Pt Monolayer Shell on Nitrided Alloy Core—A Path to Highly Stable Oxygen Reduction Catalyst
- Synthesis of Amorphous Ni−Zn Double Hydroxide Nanocages with Excellent Electrocatalytic Activity toward Oxygen Evolution Reaction
- Rugae-like FeP nanocrystal assembly on a carbon cloth: an exceptionally efficient and stable cathode for hydrogen evolution.
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