When exposed to corrosive anodic electrochemical environments, Pt alloy nanoparticles NPs undergo selective dissolution of the less noble component, resulting in catalytically active bimetallic Pt rich core shell structures. Structural evolution of PtNi6 and PtNi3 NP catalysts during their electrochemical activation and catalysis was studied by in situ anomalous small angle X ray scattering to obtain insight in element specific particle size evolution and time resolved insight in the intraparticle structure evolution. Ex situ high energy X ray diffraction coupled with pair distribution function analysis was employed to obtain detailed information on the atomic scale ordering, particle phases, structural coherence lengths, and particle seg...
Vulcan XC-72 carbon-supported Pt-Ni alloy nanoparticle catalysts with different Pt/Ni atomic composi...
Shape-controlled octahedral Pt–Ni alloy nanoparticles exhibit remarkably high activities for the ele...
Nanoparticles of Pt/Ni alloys represent state of the art electrocatalysts for fuel cell reactions. D...
When exposed to corrosive anodic electrochemical environments, Pt alloy nanoparticles NPs undergo ...
When exposed to corrosive anodic electrochemical environments, Pt alloy nanoparticles (NPs) undergo ...
Solid surfaces generally respond sensitively to their environment. Gas phase or liquid phase species...
Solid surfaces generally respond sensitively to their environment. Gas phase or liquid phase species...
Octahedral Pt-Ni nanoparticles are highly attractive as fuel-cell catalysts due to their extraordina...
Catalytic and energetic nanomaterials are analyzed chemically and structurally in atomistic detail. ...
The positive effect of intermetallic ordering of platinum alloy nanoparticles on oxygen reduction re...
Hollow bimetallic nanostructures are perfect systems to unravel the aging mechanisms of both Pt-base...
Advances in fuel cell technology depend strongly on the development of affordable, active, and stabl...
A study of the morphological and chemical stability of shape-selected octahedral Pt0.5Ni0.5 nanopart...
Multimetallic shape-controlled nanoparticles offer great opportunities to tune the activity, selecti...
Understanding the atomic structure of a catalyst is crucial to exposing the source of its performanc...
Vulcan XC-72 carbon-supported Pt-Ni alloy nanoparticle catalysts with different Pt/Ni atomic composi...
Shape-controlled octahedral Pt–Ni alloy nanoparticles exhibit remarkably high activities for the ele...
Nanoparticles of Pt/Ni alloys represent state of the art electrocatalysts for fuel cell reactions. D...
When exposed to corrosive anodic electrochemical environments, Pt alloy nanoparticles NPs undergo ...
When exposed to corrosive anodic electrochemical environments, Pt alloy nanoparticles (NPs) undergo ...
Solid surfaces generally respond sensitively to their environment. Gas phase or liquid phase species...
Solid surfaces generally respond sensitively to their environment. Gas phase or liquid phase species...
Octahedral Pt-Ni nanoparticles are highly attractive as fuel-cell catalysts due to their extraordina...
Catalytic and energetic nanomaterials are analyzed chemically and structurally in atomistic detail. ...
The positive effect of intermetallic ordering of platinum alloy nanoparticles on oxygen reduction re...
Hollow bimetallic nanostructures are perfect systems to unravel the aging mechanisms of both Pt-base...
Advances in fuel cell technology depend strongly on the development of affordable, active, and stabl...
A study of the morphological and chemical stability of shape-selected octahedral Pt0.5Ni0.5 nanopart...
Multimetallic shape-controlled nanoparticles offer great opportunities to tune the activity, selecti...
Understanding the atomic structure of a catalyst is crucial to exposing the source of its performanc...
Vulcan XC-72 carbon-supported Pt-Ni alloy nanoparticle catalysts with different Pt/Ni atomic composi...
Shape-controlled octahedral Pt–Ni alloy nanoparticles exhibit remarkably high activities for the ele...
Nanoparticles of Pt/Ni alloys represent state of the art electrocatalysts for fuel cell reactions. D...