One dimensional and bimetallic platinum nickel (PtNi) nanowires are a representative type of electrocatalyst with efficient oxygen reduction reaction (ORR) activity, while the catalytic stability is limited and still needs to be addressed. Herein, thin Pt3Ni nanowires were successfully synthesized with superior ORR activity and stability compared with the commercial Pt/C catalyst, and notably, the durability of the catalyst can be further boosted by the in situ deposition of trace Au during the synthetic process without sacrificing the high ORR activity. The mass and specific activity of the optimized catalyst were 3.08 A mgPt-1 and 5.74 mA cm-2, respectively, which are approximately 14.7 and 16.9-fold that of a commercial JM Pt/C catalyst....
We have employed an ambient, template-based technique that is simple, efficient, and surfactantless ...
Dealloyed Pt bimetallic core–shell catalysts derived from low-Pt bimetallic alloy nanoparticles (e.g...
Development of highly active and durable electrocatalysts for oxygen reduction reaction (ORR) is of ...
One dimensional and bimetallic platinum nickel (PtNi) nanowires are a representative type of electro...
One dimensional and bimetallic platinum nickel (PtNi) nanowires are a representative type of electro...
\u3cp\u3eOne dimensional and bimetallic platinum nickel (PtNi) nanowires are a representative type o...
Developing highly active as well as durable oxygen reduction reaction (ORR) electrocatalysts are sti...
Novel Au/Pt and Au/Pt(3)Ni nanostructures consisting of Pt and Pt(3)Ni alloy nanodendrites grown on ...
Control of structure at the atomic level can precisely and effectively tune catalytic properties of ...
Increasing the electrochemically active surface area (ECSA) and alloying Pt with transition metals (...
Platinum (Pt)-coated nickel (Ni) nanowires (PtNiNWs) are synthesized by the partial spontaneous galv...
International audienceDue to strain and ligand effects, the simultaneous presence of concave and con...
The common knowledge is that Pt and Pt alloy nanoparticles (NPs) less than 2 nm are not desirable fo...
An unconventional class of high-performance Pt alloy multimetallic nanowires (NWs) is produced by a ...
We describe a new strategy to enhance the catalytic durability of Pt-Ni octahedral nanocrystals in t...
We have employed an ambient, template-based technique that is simple, efficient, and surfactantless ...
Dealloyed Pt bimetallic core–shell catalysts derived from low-Pt bimetallic alloy nanoparticles (e.g...
Development of highly active and durable electrocatalysts for oxygen reduction reaction (ORR) is of ...
One dimensional and bimetallic platinum nickel (PtNi) nanowires are a representative type of electro...
One dimensional and bimetallic platinum nickel (PtNi) nanowires are a representative type of electro...
\u3cp\u3eOne dimensional and bimetallic platinum nickel (PtNi) nanowires are a representative type o...
Developing highly active as well as durable oxygen reduction reaction (ORR) electrocatalysts are sti...
Novel Au/Pt and Au/Pt(3)Ni nanostructures consisting of Pt and Pt(3)Ni alloy nanodendrites grown on ...
Control of structure at the atomic level can precisely and effectively tune catalytic properties of ...
Increasing the electrochemically active surface area (ECSA) and alloying Pt with transition metals (...
Platinum (Pt)-coated nickel (Ni) nanowires (PtNiNWs) are synthesized by the partial spontaneous galv...
International audienceDue to strain and ligand effects, the simultaneous presence of concave and con...
The common knowledge is that Pt and Pt alloy nanoparticles (NPs) less than 2 nm are not desirable fo...
An unconventional class of high-performance Pt alloy multimetallic nanowires (NWs) is produced by a ...
We describe a new strategy to enhance the catalytic durability of Pt-Ni octahedral nanocrystals in t...
We have employed an ambient, template-based technique that is simple, efficient, and surfactantless ...
Dealloyed Pt bimetallic core–shell catalysts derived from low-Pt bimetallic alloy nanoparticles (e.g...
Development of highly active and durable electrocatalysts for oxygen reduction reaction (ORR) is of ...