717 results on '"Cherevko, Serhiy"'
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202. Oxygen Evolution Reaction on Tin Oxides Supported Iridium Catalysts: Do We Need Dopants?
203. Particle Size Effect on Platinum Dissolution: Practical Considerations for Fuel Cells
204. Particle Size Effect on Platinum Dissolution: Considerations for Accelerated Stability Testing of Fuel Cell Catalysts
205. The Stability of Sulfur Stabilized Pt Single Atom Electroatalyst
206. Compositionally tuned magnetron co-sputtered PtxNi100-x alloy as a cathode catalyst for proton exchange membrane fuel cells
207. (Invited) In Depth Analysis of the Promotion of Ni on Mg:SrTiO3 By CrOx
208. Evolution of the PtNi Bimetallic Alloy Fuel Cell Catalyst under Simulated Operational Conditions
209. High Performance FeNC and Mn-oxide/FeNC Layers for AEMFC Cathodes
210. Anisotropy of Pt nanoparticles on carbon- and oxide-support and their structural response to electrochemical oxidation probed by in situ techniques
211. Visualizing Potential‐Induced Pitting Corrosion of Ultrathin Single‐Crystalline IrO 2 (110) Films on RuO 2 (110)/Ru(0001) under Electrochemical Water Splitting Conditions
212. Local Chemical Environment Governs Anode Processes in CO2 Electrolyzers.
213. Operando Stability Studies of Ultrathin Single-Crystalline IrO2(110) Films under Acidic Oxygen Evolution Reaction Conditions.
214. Time-resolved analysis of dissolution phenomena in photoelectrochemistry – A case study of WO3 photocorrosion
215. (Invited) Dissolution of Organic Overlayers Modified Platinum Single Crystal Interfaces in Acidic Medium.
216. Dissolution Stability of Graphene-Modified Pt(111).
217. Advancing Catalyst Performance in Electrochemical Water Splitting.
218. Balancing Activity and Stability through Compositional Engineering of ORR Catalysts.
219. Influence of Different Operating Conditions on Iridium Dissolution in a Proton Exchange Membrane Water Electrolyzer.
220. Tuning The Electrocatalytic Performance Of Ionic Liquid Modified Pt Catalysts For Oxygen Reduction Reaction Via Cationic Chain Engineering
221. Dissolution of Platinum Single Crystals in Acidic Medium
222. Mechanisms of Manganese Oxide Electrocatalysts Degradation during Oxygen Reduction and Oxygen Evolution Reactions
223. Dissolution of BiVO4 Photoanodes Revealed by Time-Resolved Measurements under Photoelectrochemical Conditions
224. (Invited) Novel Insights in the Activity, Selectivity and Durability of Fenc, Mn-Oxides and Fenc/Mn-Oxide Composites for ORR Catalysis in Alkaline Electrolyte and AEMFC
225. Effect of Ionic Liquid Modification on the ORR Performance and Degradation Mechanism of Trimetallic PtNiMo/C Catalysts
226. Selectivity Trends Between Oxygen Evolution and Chlorine Evolution on Iridium-Based Double Perovskites in Acidic Media
227. Stability Limits of Ni-Based Hydrogen Oxidation Electrocatalysts for Anion Exchange Membrane Fuel Cells
228. The Interparticle Distance Effect on Transient Platinum Dissolution: Degradation at High and Low Loadings
229. Towards maximized utilization of iridium for the acidic oxygen evolution reaction
230. Evaluating Electrocatalysts at Relevant Currents in a Half-Cell: The Impact of Pt Loading on Oxygen Reduction Reaction
231. On the Time Resolution of Electrochemical Scanning Flow Cell Coupled to Downstream Analysis
232. Effect of Pyrolysis Atmosphere and Electrolyte pH on the Oxygen Reduction Activity, Stability and Spectroscopic Signature of FeNx Moieties in Fe-N-C Catalysts
233. Degradation of iridium oxides via oxygen evolution from the lattice: correlating atomic scale structure with reaction mechanisms
234. Electrochemical On‐line ICP‐MS in Electrocatalysis Research
235. Electrochemical dissolution of noble metals native oxides
236. Stability and activity of non-noble based catalysts toward the hydrogen evolution reaction -feasible electrocatalysts in acidic medium?
237. Different Photostability of BiVO4 in Near-pH-Neutral Electrolytes.
238. Fabrication of a Robust PEM Water Electrolyzer Based on Non‐Noble Metal Cathode Catalyst: [Mo3S13]2− Clusters Anchored to N‐Doped Carbon Nanotubes.
239. Structure dependency of the atomic-scale mechanisms of platinum electro-oxidation and dissolution.
240. Oxygen Evolution Reaction on Tin Oxides Supported Iridium Catalysts: Do We Need Dopants?
241. Visualizing Potential‐Induced Pitting Corrosion of Ultrathin Single‐Crystalline IrO2(110) Films on RuO2(110)/Ru(0001) under Electrochemical Water Splitting Conditions.
242. In Situ Stability Studies of Platinum Nanoparticles Supported on Ruthenium−Titanium Mixed Oxide (RTO) for Fuel Cell Cathodes
243. Tuning the Electrocatalytic Performance of Ionic Liquid Modified Pt Catalysts for the Oxygen Reduction Reaction via Cationic Chain Engineering
244. Impact of Palladium Loading and Interparticle Distance on the Selectivity for the Oxygen Reduction Reaction toward Hydrogen Peroxide
245. The stability number as a metric for electrocatalyst stability benchmarking
246. Electrifying model catalysts for understanding electrocatalytic reactions in liquid electrolytes
247. Electrochemical stability of hexagonal tungsten carbide in the potential window of fuel cells and water electrolyzers investigated in a half-cell configuration
248. Atomically Defined Co3O4(111) Thin Films Prepared in Ultrahigh Vacuum: Stability under Electrochemical Conditions
249. Stability and dissolution of electrocatalysts: Building the bridge between model and “real world” systems
250. MAXNET Energy – Focusing Research in Chemical Energy Conversion on the Electrocatlytic Oxygen Evolution
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