Development of highly active and stable Pt-free oxygen reduction reaction catalysts from earth-abundant elements remains a grand challenge for highly demanded metal-air batteries. Ag-based alloys have many advantages over platinum group catalysts due to their low cost, high stability, and acceptable oxygen reduction reaction (ORR) performance in alkaline solutions. Nevertheless, compared to commercial Pt/C-20%, their catalytic activity still cannot meet the demand of commercialization. In this study, a kind of catalysts screening strategy on Agx Cu100-x nanoalloys is reported, containing the surface modification method, studies of activity enhancement mechanism, and applied research on zinc-air batteries. The results exhibit that the role o...
Zinc–air batteries are known for high theoretical energy density and environmental friendliness. The...
Zinc–air batteries are known for high theoretical energy density and environmental friendliness. The...
Metal-air batteries (MAB) is becoming a revived interest because of its high theoretical energy dens...
Development of highly active and stable Pt-free oxygen reduction reaction catalysts from earth-abund...
Silver-based nanoalloys owing to their cost, performance and stability are an attractive electrocata...
The oxygen reduction reaction (ORR) plays a crucial role in electrochemical energy conversion and st...
The oxygen reduction reaction (ORR) plays a crucial role in electrochemical energy conversion and st...
A carbon-free and binder-free catalyst layer composed of a Ag–Cu nanoalloy on Ni foam was used as th...
In electrochemical energy conversion and storage, existing catalysts often contain a high percentage...
Fuel cells are clean and efficient power sources which can convert chemical energy of hydrogen and o...
The ability to design and characterize uniform, bimetallic alloy nanoparticles, where the less activ...
Zinc-air batteries (ZABs) are regarded as one of the most promising candidates for the next-generati...
Poster Division: Engineering, Math, and Physical Sciences: 1st Place (The Ohio State University Edwa...
Electrical energy storage and conversion is vital to a clean, sustainable, and secure energy future....
A highly active Pt-Cu bimetallic catalyst for the electrocatalytic oxygen reduction reaction, with a...
Zinc–air batteries are known for high theoretical energy density and environmental friendliness. The...
Zinc–air batteries are known for high theoretical energy density and environmental friendliness. The...
Metal-air batteries (MAB) is becoming a revived interest because of its high theoretical energy dens...
Development of highly active and stable Pt-free oxygen reduction reaction catalysts from earth-abund...
Silver-based nanoalloys owing to their cost, performance and stability are an attractive electrocata...
The oxygen reduction reaction (ORR) plays a crucial role in electrochemical energy conversion and st...
The oxygen reduction reaction (ORR) plays a crucial role in electrochemical energy conversion and st...
A carbon-free and binder-free catalyst layer composed of a Ag–Cu nanoalloy on Ni foam was used as th...
In electrochemical energy conversion and storage, existing catalysts often contain a high percentage...
Fuel cells are clean and efficient power sources which can convert chemical energy of hydrogen and o...
The ability to design and characterize uniform, bimetallic alloy nanoparticles, where the less activ...
Zinc-air batteries (ZABs) are regarded as one of the most promising candidates for the next-generati...
Poster Division: Engineering, Math, and Physical Sciences: 1st Place (The Ohio State University Edwa...
Electrical energy storage and conversion is vital to a clean, sustainable, and secure energy future....
A highly active Pt-Cu bimetallic catalyst for the electrocatalytic oxygen reduction reaction, with a...
Zinc–air batteries are known for high theoretical energy density and environmental friendliness. The...
Zinc–air batteries are known for high theoretical energy density and environmental friendliness. The...
Metal-air batteries (MAB) is becoming a revived interest because of its high theoretical energy dens...