Ni Foam-Supported Fe-Doped β-Ni(OH)2 Nanosheets Show Ultralow Overpotential for Oxygen Evolution Reaction
Explore this paper's citation graph
- Type
- article
- Published
- 2019-01-31
- Cited by
- 261
- References
- 48
- Access
- Open access
- OpenAlex
- https://openalex.org/W2911308343
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:104455162
Keywords
Overpotential, Oxygen evolution, Catalysis, Electrochemistry, Materials science
References
- A superlattice of alternately stacked Ni-Fe hydroxide nanosheets and graphene for efficient splitting of water.
- Photochemical Route for Accessing Amorphous Metal Oxide Materials for Water Oxidation Catalysis
- Exfoliation of layered double hydroxides for enhanced oxygen evolution catalysis
- Preparation and characterization of aligned iron nanorod using aqueous chemical method
- Water photolysis at 12.3% efficiency via perovskite photovoltaics and Earth-abundant catalysts
- Mechanism of oxygen reactions at porous oxide electrodes. Part 2--Oxygen evolution at RuO2, IrO2 and Ir(x)Ru(1-x)O2 electrodes in aqueous acid and alkaline solution.
- Benchmarking hydrogen evolving reaction and oxygen evolving reaction electrocatalysts for solar water splitting devices.
- An advanced Ni-Fe layered double hydroxide electrocatalyst for water oxidation.
- A survey of diverse earth abundant oxygen evolution electrocatalysts showing enhanced activity from Ni–Fe oxides containing a third metal
- XAFS investigation of the structure and valency of nickel in some oxycompounds
- Investigation of the valence states of Fe and Co in Fe1−xCoxOy (0
- Three-dimensional NiFe layered double hydroxide film for high-efficiency oxygen evolution reaction.
- Fast electrosynthesis of Fe-containing layered double hydroxide arrays toward highly efficient electrocatalytic oxidation reactions† †Electronic supplementary information (ESI) available. See DOI: 10.1039/c5sc02417j
- Benchmarking heterogeneous electrocatalysts for the oxygen evolution reaction.
- Porous Nickel–Iron Oxide as a Highly Efficient Electrocatalyst for Oxygen Evolution Reaction
- Dual-sized NiFe layered double hydroxides in situ grown on oxygen-decorated self-dispersal nanocarbon as enhanced water oxidation catalysts
- Molecular Insight in Structure and Activity of Highly Efficient, Low-Ir Ir-Ni Oxide Catalysts for Electrochemical Water Splitting (OER).
- Benchmarking nanoparticulate metal oxide electrocatalysts for the alkaline water oxidation reaction
- Mechanism and Activity of Water Oxidation on Selected Surfaces of Pure and Fe-Doped NiOx
- Designing efficient doped NiOOH catalysts for water splitting with first principles calculations
Cited by
- Electrochemical Cathodic Treatment of Mild Steel as a Host for Ni(OH) 2 Catalyst for Oxygen Evolution Reaction in Alkaline Media
- Synthesis of Iron–Nickel Sulfide Porous Nanosheets via a Chemical Etching/Anion Exchange Method for Efficient Oxygen Evolution Reaction in Alkaline Media
- Amorphous N-Doped Cobalt Borophosphate Nanoparticles as Robust and Durable Electrocatalyst for Water Oxidation
- Highly active electrocatalysts of CeO2 modified NiMoO4 nanosheet arrays towards water and urea oxidation reactions
- Electrodeposition of Unary Oxide on a Bimetallic Hydroxide as a Highly Active and Stable Catalyst for Water Oxidation
- Vanadium–cobalt oxyhydroxide shows ultralow overpotential for the oxygen evolution reaction
- Cation-Modulated HER and OER Activities of Hierarchical VOOH Hollow Architectures for High-Efficiency and Stable Overall Water Splitting.
- Facile fabrication of a hierarchical NiCoFeP hollow nanoprism for efficient oxygen evolution in the Zn–air battery
- Transforming Ni‐Coagulated Polyferriertic Sulfate Sludge into Porous Heteroatom‐Doped Carbon‐Supported Transition Metal Phosphide: An Efficient Catalyst for Oxygen Evolution Reaction
- Ni–Fe Phosphate/Ni Foam Electrode: Facile Hydrothermal Synthesis and Ultralong Oxygen Evolution Reaction Durability
- Fabrication of Ti/black TiO2-PbO2 micro/nanostructures with tunable hydrophobic/hydrophilic characteristics and their photoelectrocatalytic performance
- Ni foam-supported azo linkage cobalt phthalocyanine as an efficient electrocatalyst for oxygen evolution reaction
- Loading FeOOH on Ni(OH)2 hollow nanorods to obtain a three-dimensional sandwich catalyst with strong electron interactions for an efficient oxygen evolution reaction.
- Fabrication of Ni(OH)2&NiOOH Film/Ni Electrode and the Effect of NaOH Concentration on Its Glucose Detection
- A coaxial three-layer (Ni, Fe)OxHy/Ni/Cu mesh electrode: excellent oxygen evolution reaction activity for water electrolysis
- Carbon doping switching on the hydrogen adsorption activity of NiO for hydrogen evolution reaction
- The effect of Fe(III) cations in electrolyte on oxygen evolution catalytic activity of Ni(OH)2 electrode.
- Facile Synthesis of an Efficient Ni–Fe–Co Based Oxygen Evolution Reaction Electrocatalyst
- CNT-sorbents for heavy metals: Electrochemical regeneration and closed-loop recycling.
- Tuning of electrocatalytic activity of Mn–O–Co composite for alkaline hydrogen evolution reaction
Related papers
- Oxygen Evolution Reaction (OER) on Clean and Oxygen Deficient Low-Index SrTiO3 Surfaces: A Theoretical Systematic Study
- Thermo-selenizing to rationally tune surface composition and evolve structure of stainless steel to electrocatalytically boost oxygen evolution reaction
- Self-supported Ni2P nanoarrays as efficient electrocatalysts for oxygen evolution reaction and hydrogen evolution reaction
- Lowering the Water Oxidation Overpotential by Spin-Crossover in Cobalt Hexacyanoferrate.
- High catalytic activity of oxygen-induced (200) surface of Ta2O5 nanolayer towards durable oxygen evolution reaction
- Ti3C2 mediates the NiFe-LDH layered electrocatalyst to enhance the OER performance for water splitting
- Thermodynamic and kinetic considerations about water splitting and competitive reactions in a photoelectrochemical cell
- Understanding the incorporating effect of Co2+/Co3+ in NiFe-layered double hydroxide for electrocatalytic oxygen evolution reaction
- Cobalt Phosphorous Trisulfide as a High-Performance Electrocatalyst for the Oxygen Evolution Reaction.
- An Innovative Way to Turn Catalyst into Substrate for Highly Efficient Water Splitting.