Influence of the electrolyte composition on the activity and selectivity of electrocatalytic centers
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- Type
- article
- Published
- 2016-03-15
- Cited by
- 55
- References
- 124
- OpenAlex
- https://openalex.org/W1131433359
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93723395
Keywords
Electrolyte, Catalysis, Chemistry, Selectivity, Ionic bonding
References
- Non-covalent interactions in water electrolysis: influence on the activity of Pt(111) and iridium oxide catalysts in acidic media.
- Effects of Li+, K+, and Ba2+ Cations on the ORR at Model and High Surface Area Pt and Au Surfaces in Alkaline Solutions
- Theory and Experiment in Electrocatalysis
- Oxygen Reduction Reaction in 1-Butyl-1-methyl-pyrrolidinium Bis(trifluoromethanesulfonyl)imide: Addition of Water as a Proton Species
- Mechanisms of pH-dependent activity for water oxidation to molecular oxygen by MnO2 electrocatalysts.
- Carbon nanotubes for lithium ion batteries
- Promotion of the oxidation of carbon monoxide at stepped platinum single-crystal electrodes in alkaline media by lithium and beryllium cations.
- Electroreduction of Dioxygen in 1-n-Alkyl-3-methylimidazolium Tetrafluoroborate Room-Temperature Ionic Liquids
- Low overpotential water oxidation to hydrogen peroxide on a MnOx catalyst
- Adsorption of cesium and sodium cations on a platinum electrode
- Transforming an oxygen-tolerant [NiFe] uptake hydrogenase into a proficient, reversible hydrogen producer
- Effect of pH and alkaline metal cations on the voltammetry of pt(111) single crystal electrodes in sulfuric acid solution.
- Identification of Active Edge Sites for Electrochemical H2 Evolution from MoS2 Nanocatalysts
- Polarograpic studies with the dropping mercury kathode. Part XXVII. The electro-reduction and estimation of nitrates and nitrites
- Electrochemical impedance of platinum in concentrated chloride solutions under potentiodynamic anodic polarization: Effect of alkali metal cations
- New insights into the electrochemical hydrogen oxidation and evolution reaction mechanism
- Comparing Hydrogen Oxidation and Evolution Reaction Kinetics on Polycrystalline Platinum in 0.1 M and 1 M KOH
- Improving the hydrogen oxidation reaction rate by promotion of hydroxyl adsorption.
- An integrated approach to Deacon chemistry on RuO2-based catalysts
- Switching on the electrocatalytic ethene epoxidation on nanocrystalline RuO2.
Cited by
- The Dilemma of Supporting Electrolytes for Electroorganic Synthesis: A Case Study on Kolbe Electrolysis.
- Impact of the alkali cation on the electrocatalytic oxidation of urea and benzyl alcohol on nickel electrode
- Site-specific catalytic activity of model platinum surfaces in different electrolytic environments as monitored by the CO oxidation reaction
- Towards Versatile and Sustainable Hydrogen Production through Electrocatalytic Water Splitting: Electrolyte Engineering
- Perspective: On the active site model in computational catalyst screening.
- On the pH Dependence of the Potential of Maximum Entropy of Ir(111) Electrodes
- A materials driven approach for understanding single entity nano impact electrochemistry
- Identification of active sites at model platinum electrocatalyts
- Reconsidering Water Electrolysis: Producing Hydrogen at Cathodes Together with Selective Oxidation of n-Butylamine at Anodes.
- Engineering of Highly Active Silver Nanoparticles for Oxygen Electroreduction via Simultaneous Control over Their Shape and Size
- Electrochemically Formed NaxMn[Mn(CN)6] Thin Film Anodes Demonstrate Sodium Intercalation and Deintercalation at Extremely Negative Electrode Potentials in Aqueous Media
- Quantifying the turnover frequency for ethanol electro-oxidation on polycrystalline Pt in acid and alkaline media
- Electrolyte sensitivity of TEMPO mediated methanol and glycine electrooxidation
- Influence of Alkali Metal Cations on the Hydrogen Evolution Reaction Activity of Pt, Ir, Au, and Ag Electrodes in Alkaline Electrolytes
- Cobalt Oxide Materials for Oxygen Evolution Catalysis via Single-Source Precursor Chemistry.
- Oxygen Electroreduction at High-Index Pt Electrodes in Alkaline Electrolytes: A Decisive Role of the Alkali Metal Cations
- Atomically Thin Metal Films on Foreign Substrates: From Lattice Mismatch to Electrocatalytic Activity
- Activation of CO2 at the electrode-electrolyte interface by a co-adsorbed cation and an electric field.
- Electrochemical cross-coupling of biogenic di-acids for sustainable fuel production
- Activation of Oxygen Reduction Reaction on Well-Defined Pt Electrocatalysts in Alkaline Media Containing Hydrophobic Organic Cations
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