Improving the efficiency of electrocatalytic reduction of oxygen represents one of the main challenges for the development of renewable energy technologies. Here, we report the systematic evaluation of Pt-ternary alloys (Pt<sub>3</sub>(MN)<sub>1</sub> with M, N = Fe, Co, or Ni) as electrocatalysts for the oxygen reduction reaction (ORR). We first studied the ternary systems on extended surfaces of polycrystalline thin films to establish the trend of electrocatalytic activities and then applied this knowledge to synthesize ternary alloy nanocatalysts by a solvothermal approach. This study demonstrates that the ternary alloy catalysts can be compelling systems for further advancement of ORR electrocatalysis, reaching higher catalytic activiti...
Increasing the electrochemically active surface area (ECSA) and alloying Pt with transition metals (...
International audienceCarbon-supported monometallic, binary and ternary nanocatalysts based on Pt, P...
Platinum alloy nanoparticles show great promise as electrocatalysts for the oxygen reduction reactio...
We report the application of a new method for the high-throughput synthesis and screening of thin fi...
An electrodeposition-based protocol for the synthesis of ternary Pt−Fe−Co electrocatalysts for the o...
In electrochemical energy conversion and storage, existing catalysts often contain a high percentag...
In electrochemical energy conversion and storage, existing catalysts often contain a high percentag...
Here we investigate the oxygen reduction reaction electrocatalytic activity and the corrosion stabil...
The design of electrocatalysts for polymer electrolyte membrane fuel cells must satsify two equally ...
The design of electrocatalysts for polymer electrolyte membrane fuel cells must satsify two equally ...
The ability to tune the atomic-scale structural and chemical ordering in nanoalloy catalysts is esse...
Recently, Pt<sub>3</sub>M (M = Fe, Ni, Co, Cu, etc.) intermetallic compounds have been highlighted a...
The ability to tune the atomic-scale structural and chemical ordering in nanoalloy catalysts is esse...
Dealloyed Pt bimetallic nanoparticles are highly active electrocatalysts for the electroreduction of...
The design of electrocatalysts for polymer electrolyte membrane fuel cells must satsify two equally ...
Increasing the electrochemically active surface area (ECSA) and alloying Pt with transition metals (...
International audienceCarbon-supported monometallic, binary and ternary nanocatalysts based on Pt, P...
Platinum alloy nanoparticles show great promise as electrocatalysts for the oxygen reduction reactio...
We report the application of a new method for the high-throughput synthesis and screening of thin fi...
An electrodeposition-based protocol for the synthesis of ternary Pt−Fe−Co electrocatalysts for the o...
In electrochemical energy conversion and storage, existing catalysts often contain a high percentag...
In electrochemical energy conversion and storage, existing catalysts often contain a high percentag...
Here we investigate the oxygen reduction reaction electrocatalytic activity and the corrosion stabil...
The design of electrocatalysts for polymer electrolyte membrane fuel cells must satsify two equally ...
The design of electrocatalysts for polymer electrolyte membrane fuel cells must satsify two equally ...
The ability to tune the atomic-scale structural and chemical ordering in nanoalloy catalysts is esse...
Recently, Pt<sub>3</sub>M (M = Fe, Ni, Co, Cu, etc.) intermetallic compounds have been highlighted a...
The ability to tune the atomic-scale structural and chemical ordering in nanoalloy catalysts is esse...
Dealloyed Pt bimetallic nanoparticles are highly active electrocatalysts for the electroreduction of...
The design of electrocatalysts for polymer electrolyte membrane fuel cells must satsify two equally ...
Increasing the electrochemically active surface area (ECSA) and alloying Pt with transition metals (...
International audienceCarbon-supported monometallic, binary and ternary nanocatalysts based on Pt, P...
Platinum alloy nanoparticles show great promise as electrocatalysts for the oxygen reduction reactio...