Keywords: تحمل CO; Boron; Nitrogen; Doping; Oxygen reduction reaction; CO tolerance
مقالات ISI تحمل CO (ترجمه نشده)
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Keywords: تحمل CO; CO tolerance; Extended-surface support; Density functional theory; Molecular dynamics;
Keywords: تحمل CO; Structural changes; Methanol electrooxidation; CO tolerance; Pt depletion;
Keywords: تحمل CO; CO tolerance; Catalyst support; Bifunctional mechanism; Hydrogen pump; Strong metal-support interaction; Schottky junction
Improvement in stability of PtRu electrocatalyst by carbonization of in-situ polymerized polyaniline
Keywords: تحمل CO; Direct methanol fuel cells; PtRu electrocatalyst; Polyaniline; CO tolerance; Ru dissolution;
Experimental investigation of CO tolerance in high temperature PEM fuel cells
Keywords: تحمل CO; Fuel cell; Hydrogen; HT-PEMFC; MEA; Polybenzimidazole; CO tolerance;
Ru-core@Pt-shell nanosheet for fuel cell electrocatalysts with high activity and durability
Keywords: تحمل CO; Core-shell; Nanosheet; Oxygen reduction reaction; Hydrogen oxidation reaction; CO tolerance; Durability;
Stabilization of PtRu electrocatalyst by nitrogen doped carbon layer derived from carbonization of poly(vinyl pyrrolidone)
Keywords: تحمل CO; Direct methanol fuel cells; PtRu electrocatalyst; Nitrogen doped carbon layer; Poly(vinyl pyrrolidone); CO tolerance; Durability;
Nonlinear algorithm of PEM fuel cell catalyst poisoning progress in the presence of carbon monoxide in anode fuel: A computational study using OpenFOAM
Keywords: تحمل CO; carbon monoxide tolerant; oxygen bleeding; purge condition; degradation; nonlinear progress algorithm; CO tolerance;
The Enhanced CO Tolerance of Platinum Supported on FeP Nanosheet for Superior Catalytic Activity Toward Methanol Oxidation
Keywords: تحمل CO; Methanol oxidation; Pt/FeP nanosheet; CO tolerance; hydrogen evolution reaction;
Electrocatalytic performance of Pt nanoparticles sputter-deposited on indium tin oxide toward methanol oxidation reaction: The particle size effect
Keywords: تحمل CO; Pt nanoparticle; ITO; Methanol oxidation reaction; CO tolerance; Bifunctional mechanism;
Improving electrochemical activity of PtRu/SnO2/C catalyst by reduction treatment and alkaline etching
Keywords: تحمل CO; Platinum; Ruthenium; Tin oxide; CO tolerance; Methanol electro-oxidation;
Boosting the performance of formic acid microfluidic fuel cell: Oxygen annealing enhanced Pd@graphene electrocatalyst
Keywords: تحمل CO; Fuel cell; Graphene; Annealing; CO tolerance
Facile preparation of PtPdPt/graphene nanocomposites with ultrahigh electrocatalytic performance for methanol oxidation
Keywords: تحمل CO; PtPdPt/graphene nanocomposites; Electrodeposition; Catalysts; Methanol oxidation; CO tolerance
A theoretical understanding on the CO-tolerance mechanism of the WC(0001) supported Pt monolayer: Some improvement strategies
Keywords: تحمل CO; Tungsten carbides; Platinum monolayer; CO tolerance; Density functional theory;
TiN@nitrogen-doped carbon supported Pt nanoparticles as high-performance anode catalyst for methanol electrooxidation
Keywords: تحمل CO; Titanium nitride; Nitrogen-doped carbon; Electrocatalyst; Methanol oxidation; CO tolerance;
Electrocatalyst composed of platinum nanoparticles deposited on doubly polymer-coated carbon nanotubes shows a high CO-tolerance in methanol oxidation reaction
Keywords: تحمل CO; Carbon nanotubes; Electrocatalyst; CO tolerance; Direct methanol fuel cells; Polymer-coated carbon nanotubes;
Poisoning phenomenon and oxygen bleeding in dead-ended polymer electrolyte membrane fuel cells: A computational study using OpenFOAM®
Keywords: تحمل CO; PEM fuel cell; CO tolerance; Purge; CO poisoning; Degradation; OpenFOAM;
Pt modified tungsten carbide as anode electrocatalyst for hydrogen oxidation in proton exchange membrane fuel cell: CO tolerance and stability
Keywords: تحمل CO; Carbon supported tungsten carbide; Hydrogen oxidation; CO tolerance; PEMFC
Promoting Effect of Hydrocarbon Impurities on the Electro-Oxidation of Formic Acid at Pt Nanoparticles Modified GC Electrodes
Keywords: تحمل CO; Hydrocarbon impurities; CO Tolerance; Electrocatalysis; Nanoparticles; DFAFCs;
Tolerance of platinum clusters to CO poisoning induced by molybdenum doping
Keywords: تحمل CO; PtMo; Doped platinum clusters; Direct methanol fuel cell; Unimolecular dissociation; CO tolerance;
Intermittent microwave synthesis of nanostructured Pt/TiN-graphene with high catalytic activity for methanol oxidation
Keywords: تحمل CO; TiN; Graphene; Microwave; Methanol oxidation activity; CO tolerance;
Effect of heat treatment on the activity and stability of carbon supported PtMo alloy electrocatalysts for hydrogen oxidation in proton exchange membrane fuel cells
Keywords: تحمل CO; PEMFC; CO tolerance; Stability; PtMo/C catalyst; Hydrogen oxidation;
Molybdenum carbide-based electrocatalysts for CO tolerance in proton exchange membrane fuel cell anodes
Keywords: تحمل CO; Molybdenum carbide; PEMFC; Ultra-sonication; stability; CO tolerance;
On the tungsten carbide synthesis for PEM fuel cell application – Problems, challenges and advantages
Keywords: تحمل CO; Tungsten carbide; Catalyst support; PEM fuel cell; Hydrogen oxidation; CO tolerance
Effect of CO and oxygen on anode degradation in polymer electrolyte fuel cell
Keywords: تحمل CO; Polymer electrolyte fuel cell; CO tolerance; Ionomer; Degradation factor;
High-performance Pd@PtRu/C catalyst for the anodic oxidation of methanol prepared by decorating Pd/C with a PtRu shell
Keywords: تحمل CO; Low-platinum catalyst; Methanol oxidation; Core-shell structure; CO tolerance;
The high performance of tungsten carbides/porous bamboo charcoals supported Pt catalysts for methanol electrooxidation
Keywords: تحمل CO; Bamboo charcoals (BCs); Tungsten carbide (WC); Three-dimensional structure; Methanol oxidation; CO tolerance;
Validation of an externally oil-cooled 1 kWel HT-PEMFC stack operating at various experimental conditions
Keywords: تحمل CO; HT-PEMFC; Fuel cell stack; Externally cooled; Performance; CO tolerance;
Pt/IrO2/CNT anode catalyst with high performance for direct methanol fuel cells
Keywords: تحمل CO; Fuel cells; Methanol oxidation; Electrocatalysis; Anode catalyst; CO tolerance
CO tolerance of proton exchange membrane fuel cells with Pt/C and PtMo/C anodes operating at high temperatures: A mass spectrometry investigation
Keywords: تحمل CO; PEMFC; Temperature effect; CO tolerance; CO2 tolerance; Mass spectrometry
Pt nanoclusters stabilized by N-doped carbon nanofibers for hydrogen production from formic acid
Keywords: تحمل CO; Formic acid; Decomposition; Hydrogen storage; Fuel cells; CO tolerance; Platinum; Clusters
Mesoporous tungsten carbide-supported platinum as carbon monoxide-tolerant electrocatalyst for methanol oxidation
Keywords: تحمل CO; Mesoporous tungsten carbide; Platinum; Electrocatalyst; Methanol oxidation; CO tolerance
New non-platinum Ir–V–Mo electro-catalyst, catalytic activity and CO tolerance in hydrogen oxidation reaction
Keywords: تحمل CO; Ir–V–Mo/C catalyst; Hydrogen oxidation reaction; CO tolerance; Anode; PEMFCs; Hydrogen energy
In-situ investigation on the CO tolerance of carbon supported Pd–Pt electrocatalysts with low Pt content by electrochemical impedance spectroscopy
Keywords: تحمل CO; Proton exchange membrane fuel cells (PEMFCs); Low-Pt catalysts; Pd–Pt electrocatalysts; Hydrogen oxidation reaction (HOR); CO tolerance; Electrochemical impedance spectroscopy (EIS)
CO tolerance of nano-architectured Pt–Mo anode electrocatalysts for PEM fuel cells
Keywords: تحمل CO; PEM fuel cells; Electrocatalyst; CO tolerance; Platinum alloys
Performance of a poly(2,5-benzimidazole)-based polymer electrolyte membrane fuel cell
Keywords: تحمل CO; High temperature PEMFC; Cell performance; ABPBI; CO tolerance; Humidity; Temperature
Hydrogen electrooxidation over palladium–gold alloy: Effect of pretreatment in ethylene on catalytic activity and CO tolerance
Keywords: تحمل CO; Palladium–gold alloy; Hydrogen electrooxidation; CO tolerance; Interstitial carbon
Electrocatalytic activity of Pt/C catalysts for methanol electrooxidation promoted by molybdovanadophosphoric acid
Keywords: تحمل CO; Fuel cell; Methanol electrooxidation; CO tolerance; Molybdovanadophosphoric acid
Sub-nano-Pt cluster supported on graphene nanosheets for CO tolerant catalysts in polymer electrolyte fuel cells
Keywords: تحمل CO; Sub-nano-Pt clusters; Graphene nanosheet; CO tolerance
Properties of Pt-based electrocatalysts containing selectively deposited Sn as the anode for polymer electrolyte membrane fuel cells
Keywords: تحمل CO; CVD; Sn; CO tolerance; PEMFC; PtSn/C; PtRuSn/C
Electrocatalytic activity of Pt nanoparticles on a karst-like Ni thin film toward methanol oxidation in alkaline solutions
Keywords: تحمل CO; Nickel; Platinum nanoparticles; DMFC; CO tolerance; Alkaline solution
Testing of carbon supported Pd–Pt electrocatalysts for methanol electrooxidation in direct methanol fuel cells
Keywords: تحمل CO; Pd–Pt; Methanol electrooxidation; CO tolerance; Direct methanol fuel cell
Preparation of a CO-tolerant PtRuxSny/C electrocatalyst with an optimal Ru/Sn ratio by selective Sn-deposition on the surfaces of Pt and Ru
Keywords: تحمل CO; CVD; CO tolerance; Fuel cell; Pt; Ru; Sn;
CO electrooxidation study on Pt and Pt-Ru in H3PO4 using MEA with PBI-H3PO4 membrane
Keywords: تحمل CO; PBI; PEMFC; CO electrooxidation; CO tolerance; Pt; Pt-Ru;
Temperature-dependent CO desorption kinetics on supported gold nanoparticles: Relevance to clean hydrogen production and fuel cell systems
Keywords: تحمل CO; CO desorption; Gold; PEM fuel cell; CO tolerance; Water–gas-shift reaction; Preferential CO oxidation reaction
Design and preparation of highly active carbon nanotube-supported sulfated TiO2 and platinum catalysts for methanol electrooxidation
Keywords: تحمل CO; Electrocatalyst; Carbon nanotube; Structural design; High catalytic activity; CO tolerance; Direct methanol fuel cell
The CO tolerance pathways on the Pt–Ru electrocatalytic system
Keywords: تحمل CO; Hydrogen oxidation; Electrocatalysis; CO tolerance; Electronic effect; CO methanation
CO tolerance and catalytic activity of Pt/Sn/SnO2 nanowires loaded on a carbon paper
Keywords: تحمل CO; CO tolerance; Pt/Sn catalyst; Ethanol oxidation; Methanol oxidation; SnO2 nanowires
Particle size dependence of CO tolerance of anode PtRu catalysts for polymer electrolyte fuel cells
Keywords: تحمل CO; Polymer electrolyte fuel cell; Catalyst; PtRu; CO tolerance