Ligament size-dependent electrocatalytic activity of nanoporous Ag network for CO2 reduction.
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Summary
Improved selectivity and activity of np-Ag (21 nm) are attributed to the enhanced electrochemical surface area, higher local pH derived from ligament size effect, as well as more defect sites (i.e., grain boundaries) in ligaments.
- Type
- article
- Published
- 2018-10-09
- Cited by
- 16
- References
- 42
- OpenAlex
- https://openalex.org/W2793196049
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:49682030
Keywords
Nanoporous, Reduction (mathematics), Electrocatalyst, Materials science, Chemistry
References
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- Sustainable hydrocarbon fuels by recycling CO2 and H2O with renewable or nuclear energy
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- Alternative energy technologies
- The teraton challenge. A review of fixation and transformation of carbon dioxide
- Aqueous CO2 reduction at very low overpotential on oxide-derived Au nanoparticles.
- CO and CO2 hydrogenation study on supported cobalt Fischer-Tropsch synthesis catalysts
- Opportunities and challenges for a sustainable energy future
- Status and perspectives of CO2 conversion into fuels and chemicals by catalytic, photocatalytic and electrocatalytic processes
- Charge-Induced Reversible Strain in a Metal
- A selective and efficient electrocatalyst for carbon dioxide reduction
- A review of the aqueous electrochemical reduction of CO2 to hydrocarbons at copper
- Grain-boundary-dependent CO2 electroreduction activity.
- Gold catalysts: nanoporous gold foams.
- Nanoporous metal/oxide hybrid electrodes for electrochemical supercapacitors.
- Mechanistic Insights into the Electrochemical Reduction of CO2 to CO on Nanostructured Ag Surfaces
- Partially oxidized atomic cobalt layers for carbon dioxide electroreduction to liquid fuel
Cited by
- Preparation of Hierarchically Assembled Silver Nanostructures based on the Morphologies of Crystalline Peptide-Silver(I) Complexes.
- Enhancing CO2 electroreduction on nanoporous silver electrode in the presence of halides
- Nanostructured amalgams with tuneable silver–mercury bonding sites for selective electroreduction of carbon dioxide into formate and carbon monoxide
- An overview on the recent developments of Ag-based electrodes in the electrochemical reduction of CO2 to CO
- Roles of Oxygen Functional Groups in Carbon Nanotubes‐Supported Ag Catalysts for Electrochemical Conversion of CO 2 to CO
- Polyacrylamide-Mediated Silver Nanoparticles for Selectively Enhancing Electroreduction of CO2 towards CO in Water.
- High-density Ag nanosheets for selective electrochemical CO2 reduction to CO
- Macro-/micro-coupling regulation of nanoporous metals via vapor phase alloying-dealloying
- Ultrathin and dense Ag nanosheets synthesis under suppressed face (111) growth and surface diffusion
- Selective Anodic Dissolution of Ag–Zn Alloys in the Eutectic Melt of Alkali Metal Chlorides at 300°С
- Effect of nickel-based electrocatalyst size on electrochemical carbon dioxide reduction: A density functional theory study.
- Recent advances on the nanoporous catalysts for the generation of renewable fuels
- Monotonically increasing relationship between conversion selectivity from CO2 to CO and the interface area of Cu-Ag biphasic electrochemical catalyst
- Formation of a nanoporous layer on the surface of silver and copper by dealloying of thermal diffusion coatings Me5Zn8 (Me=Ag, Cu) in a deep eutectic solvent
- Electrocatalytic CO2 reduction on nanoporous CuO synthesized using dissimilar silica hard templates
- Tuning Ag-Modified Natao3 to Achieve High Co Selectivity for the Photocatalytic Conversion of Co2 Using H2o as the Electron Donor
- Tuning Ag-modified NaTaO3 to achieve high CO selectivity for the photocatalytic conversion of CO2 using H2O as the electron donor
- Tuning Ag-Modified Natao3 to Achieve High Co Selectivity for the Photocatalytic Conversion of Co2 Using H2o as the Electron Donor
- Monolithic Cl-Modified Nanoporous Ag Nanowires for Electrochemical CO2 Reduction to CO
- A Review of CO2 Electroreduction to Ethanol: C–C Coupling Mechanistic Insights and Catalyst Design
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