The scanning droplet-based technique, scanning electrochemical cell microscopy (SECCM), combined with electron backscatter diffraction (EBSD), is demonstrated as a powerful approach for visualizing surface structure effects on the rate of the oxygen reduction reaction (ORR) at polycrystalline platinum electrodes. Elucidating the effect of electrode structure on the ORR is of major interest in connection to electrocatalysis for energy-related applications. The attributes of the approach herein stem from: (i) the ease with which the polycrystalline substrate electrode can be prepared; (ii) the wide range of surface character open to study; (iii) the possibility of mapping reactivity within a particular facet (or grain), in a pseudo-single-cry...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
The structure of gas diffusion electrodes in fuel cells is complex: The porous electrode often cons...
Hydrogen fuel cells are promising devices that can be utilized as a carbon-neutral mobile energy sou...
The scanning droplet-based technique, scanning electrochemical cell microscopy (SECCM), combined wit...
The tip generation/substrate collection mode (TG/SC) of scanning electrochemical microscopy (SECM) w...
The influence of electrode surface structure on electrochemical reaction rates and mechanisms is a m...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
The influence of electrode surface structure on electrochemical reaction rates and mechanisms is a m...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
The study of the structure-activity relationship of electrode surfaces is fundamentally important in...
Understanding how crystallographic orientation influences the electrocatalytic performance of metal ...
Scanning Electrochemical Cell Microscopy (SECCM) has proven powerful for gaining electrochemical kno...
Scanning electrochemical cell microscopy (SECCM) is a nanopipette-based scanning electrochemical pro...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
The structure of gas diffusion electrodes in fuel cells is complex: The porous electrode often cons...
Hydrogen fuel cells are promising devices that can be utilized as a carbon-neutral mobile energy sou...
The scanning droplet-based technique, scanning electrochemical cell microscopy (SECCM), combined wit...
The tip generation/substrate collection mode (TG/SC) of scanning electrochemical microscopy (SECM) w...
The influence of electrode surface structure on electrochemical reaction rates and mechanisms is a m...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
The influence of electrode surface structure on electrochemical reaction rates and mechanisms is a m...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
The study of the structure-activity relationship of electrode surfaces is fundamentally important in...
Understanding how crystallographic orientation influences the electrocatalytic performance of metal ...
Scanning Electrochemical Cell Microscopy (SECCM) has proven powerful for gaining electrochemical kno...
Scanning electrochemical cell microscopy (SECCM) is a nanopipette-based scanning electrochemical pro...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
The structure of gas diffusion electrodes in fuel cells is complex: The porous electrode often cons...
Hydrogen fuel cells are promising devices that can be utilized as a carbon-neutral mobile energy sou...