Octahedral faceted nanoparticles are highly attractive fuel cell catalysts as a result of their activity for the oxygen reduction reaction (ORR). However, their surface compositional and morphological stability currently limits their long-term performance in real membrane electrode assemblies. Here, we perform in situ heating of compositionally segregated PtNi1.5 octahedral nanoparticles inside a transmission electron microscope, in order to study their compositional and morphological changes. The starting PtNi1.5 octahedra have Pt-rich edges and concave Ni-rich {111} facets. We reveal a morphological evolution sequence, which involves transformation from concave octahedra to particles with atomically flat {100} and {111} facets, ideally re...
© 2020 American Chemical Society. Developing solid solution nanoparticles with complex faceted geome...
We report a rapid solution-phase strategy to synthesize alloyed PtNi nanoparticles which demonstrate...
© 2020 American Chemical Society. Developing solid solution nanoparticles with complex faceted geome...
Octahedral faceted nanoparticles are highly attractive fuel cell catalysts as a result of their acti...
Octahedral faceted nanoparticles are highly attractive fuel cell catalysts as a result of their acti...
Octahedral faceted nanoparticles are highly attractive fuel cell catalysts as a result of their acti...
We performed in situ transmission electron microscopy of phase-segregated octahedral Pt–Ni alloy fue...
Studies that demonstrated enhanced electrocatalytic oxygen reduction activities of octahedral PtNi n...
Octahedral Pt-Ni nanoparticles are highly attractive as fuel-cell catalysts due to their extraordina...
Advances in fuel cell technology depend strongly on the development of affordable, active, and stabl...
The progress in colloidal synthesis of Pt–Ni octahedra has been instrumental in rising the oxygen re...
Advances in fuel cell technology depend strongly on the development of affordable, active, and stabl...
Octahedral Pt–Ni catalyst nanoparticles (NPs) are predicted to exhibit high activity for the oxygen ...
Shape-controlled octahedral Pt–Ni alloy nanoparticles exhibit remarkably high activities for the ele...
We report a rapid solution-phase strategy to synthesize alloyed PtNi nanoparticles which demonstrate...
© 2020 American Chemical Society. Developing solid solution nanoparticles with complex faceted geome...
We report a rapid solution-phase strategy to synthesize alloyed PtNi nanoparticles which demonstrate...
© 2020 American Chemical Society. Developing solid solution nanoparticles with complex faceted geome...
Octahedral faceted nanoparticles are highly attractive fuel cell catalysts as a result of their acti...
Octahedral faceted nanoparticles are highly attractive fuel cell catalysts as a result of their acti...
Octahedral faceted nanoparticles are highly attractive fuel cell catalysts as a result of their acti...
We performed in situ transmission electron microscopy of phase-segregated octahedral Pt–Ni alloy fue...
Studies that demonstrated enhanced electrocatalytic oxygen reduction activities of octahedral PtNi n...
Octahedral Pt-Ni nanoparticles are highly attractive as fuel-cell catalysts due to their extraordina...
Advances in fuel cell technology depend strongly on the development of affordable, active, and stabl...
The progress in colloidal synthesis of Pt–Ni octahedra has been instrumental in rising the oxygen re...
Advances in fuel cell technology depend strongly on the development of affordable, active, and stabl...
Octahedral Pt–Ni catalyst nanoparticles (NPs) are predicted to exhibit high activity for the oxygen ...
Shape-controlled octahedral Pt–Ni alloy nanoparticles exhibit remarkably high activities for the ele...
We report a rapid solution-phase strategy to synthesize alloyed PtNi nanoparticles which demonstrate...
© 2020 American Chemical Society. Developing solid solution nanoparticles with complex faceted geome...
We report a rapid solution-phase strategy to synthesize alloyed PtNi nanoparticles which demonstrate...
© 2020 American Chemical Society. Developing solid solution nanoparticles with complex faceted geome...