Electrocatalysis Electrochemistry Metal Catalysts Hydrogen Production Chemical Reactions Sustainable Chemistry Photocatalysis Catalysts Enzymatic Catalysis Plasmonic Catalysis Biomass Conversion Single-Atom Catalysis Photoredox Catalysis Industrial Catalysis Catalysis Innovation Consortium Catalyst Characterization Hydrogen Storage Greenhouse Gases Vanadium Pentoxide Carbon Dioxide Utilization Organic Chemistry Single Atom Catalysts Chemical Engineering Ethylene production Reforming Reactions Acetylene Semi-Hydrogenation Catalytic Performance Thermochemical Reactions Ortho-Para Conversion Catalyst Materials Heterogeneous Catalysis Propane Dehydrogenation Water Oxidation Catalytic Materials High-Temperature Catalysts Oxidation Reactions Industrial Chemistry Single-Atom Catalysts Nanomaterials Plastic Recycling Catalyst Technology Copper Catalysis Copper Catalysts Polyolefins Metal-Organic Frameworks Organocatalysis Acid-Base Reactions Biocatalysis Reaction Mechanisms Rhodium Catalysts Catalyst Systems Methane Conversion Polymer Chemistry Microwave Catalysis Enzyme-Inspired Catalysts Liquid Metal Catalysts Palladium Cobalt-Manganese Catalysts Real-Time Observation Trimetallic Catalysts
On-surface synthesis produced one-dimensional chains with open coordination sites that theory shows bind CO, O2, H2 more strongly.