The ability to tune the atomic-level structure of alloy nanoparticles (NPs) is essential for the design and preparation of active and stable catalysts for fuel cell reactions such as the oxygen reduction reaction (ORR), which is highly sensitive to the structure of the catalysts. We report here structurally tunable PdCu nanoparticle catalysts for the ORR obtained by varying the thermochemical treatment conditions. The phase type and the atomic structure of the nanoalloy catalysts strongly depend on the thermochemical treatment temperature and atmosphere, especially at low temperatures. While PdCu nanoalloys feature both body-centered cubic (bcc) and face-centered cubic (fcc) phase structures, a pure fcc structure, prepared at an unusually l...
Bimetallic nanocatalyst often shows enhanced performance where the key lies not only on the overall ...
Gaining an insight into the relationship between the bimetallic composition and catalytic activity i...
Fuel cells are promising power sources, but the performanceof current proton-exchange membrane fuel ...
The catalytic synergy of nanoalloy catalysts depends on the nanoscale size, composition, phase state...
The nanoscale composition and structure of alloy catalysts affect their performance in heterogeneous...
Understanding how the composition and atomic-scale structure of a nanocatalyst changes when it is op...
The ability to tune the atomic-scale structural and chemical ordering in nanoalloy catalysts is esse...
Abstract Bimetallic nanoparticle (NP) catalysts are widely used in many heterogeneous gas‐based reac...
The development of superior non-platinum electrocatalysts for enhancing the electrocatalytic activit...
Alloying palladium (Pd) with other transition metals at the nanoscale has become an important pathwa...
The ability to tune the atomic-scale structural and chemical ordering in nanoalloy catalysts is esse...
The high performance of Pd-based intermetallic nanocatalysts has the potential to replace Pt-contain...
textProton exchange membrane fuel cells are attractive power sources because they are highly efficie...
textProton exchange membrane fuel cells are attractive power sources because they are highly efficie...
Alloying is a strategy that has been used to find non-Ptelectrocatalysts that are effective and less...
Bimetallic nanocatalyst often shows enhanced performance where the key lies not only on the overall ...
Gaining an insight into the relationship between the bimetallic composition and catalytic activity i...
Fuel cells are promising power sources, but the performanceof current proton-exchange membrane fuel ...
The catalytic synergy of nanoalloy catalysts depends on the nanoscale size, composition, phase state...
The nanoscale composition and structure of alloy catalysts affect their performance in heterogeneous...
Understanding how the composition and atomic-scale structure of a nanocatalyst changes when it is op...
The ability to tune the atomic-scale structural and chemical ordering in nanoalloy catalysts is esse...
Abstract Bimetallic nanoparticle (NP) catalysts are widely used in many heterogeneous gas‐based reac...
The development of superior non-platinum electrocatalysts for enhancing the electrocatalytic activit...
Alloying palladium (Pd) with other transition metals at the nanoscale has become an important pathwa...
The ability to tune the atomic-scale structural and chemical ordering in nanoalloy catalysts is esse...
The high performance of Pd-based intermetallic nanocatalysts has the potential to replace Pt-contain...
textProton exchange membrane fuel cells are attractive power sources because they are highly efficie...
textProton exchange membrane fuel cells are attractive power sources because they are highly efficie...
Alloying is a strategy that has been used to find non-Ptelectrocatalysts that are effective and less...
Bimetallic nanocatalyst often shows enhanced performance where the key lies not only on the overall ...
Gaining an insight into the relationship between the bimetallic composition and catalytic activity i...
Fuel cells are promising power sources, but the performanceof current proton-exchange membrane fuel ...