This work studies the hydrogen oxidation reaction using both single mesoporous platinum nanoparticles (<i>r</i><sub>np</sub> = 23.1 ± 2.1 nm) and low density random arrays of material. The activity of the platinum catalyst, toward the oxidation of hydrogen, is shown to be potential dependent and exhibits two peaks in activity. These peaks in activity are measured at both random arrays of platinum nanoparticles and at the single entity scale. This alteration in the particle activity is directly reflected in the variation of the electrochemical current. These peaks in current do not relate to a mass-transport limitation of the reaction, and at high overpotentials the oxidation reaction becomes fully inhibited. This potential dependency is rev...
In the bulk solution phase the electrical potential of a single metallic nanoparticle can be control...
The underpotential deposition and removal of hydrogen from a mesoporous platinum nanoparticle surfac...
The underpotential deposition and removal of hydrogen from a mesoporous platinum nanoparticle surfac...
This work studies the hydrogen oxidation reaction using both single mesoporous platinum nanoparticle...
This work studies the hydrogen oxidation reaction using both single mesoporous platinum nanoparticle...
This thesis reports experimental work with two main aims: the first is the investigation of single n...
This thesis reports experimental work with two main aims: the first is the investigation of single ...
The kinetics of the hydrogen oxidation reaction (HOR) on platinum nanoparticles (PtNPs) is explored....
The kinetics of the hydrogen oxidation reaction (HOR) on platinum nanoparticles (PtNPs) is explored....
Improving the performance of hydrogen evolution and oxidation reactions using precious metal catalys...
For small Pt nanoparticles (NPs), catalytic activity is, as observed, adversely affected by size in ...
Understanding oxygen reduction, key to much of electrochemical energy transformation technology, cru...
For small Pt nanoparticles (NPs), catalytic activity is, as observed, adversely affected by size in ...
The effect of interfacial pH during the surface cleaning of shape-selected PtNi nanoparticles was in...
The decomposition of H<sub>2</sub>O<sub>2</sub> to H<sub>2</sub>O and O<sub>2</sub> catalyzed by pla...
In the bulk solution phase the electrical potential of a single metallic nanoparticle can be control...
The underpotential deposition and removal of hydrogen from a mesoporous platinum nanoparticle surfac...
The underpotential deposition and removal of hydrogen from a mesoporous platinum nanoparticle surfac...
This work studies the hydrogen oxidation reaction using both single mesoporous platinum nanoparticle...
This work studies the hydrogen oxidation reaction using both single mesoporous platinum nanoparticle...
This thesis reports experimental work with two main aims: the first is the investigation of single n...
This thesis reports experimental work with two main aims: the first is the investigation of single ...
The kinetics of the hydrogen oxidation reaction (HOR) on platinum nanoparticles (PtNPs) is explored....
The kinetics of the hydrogen oxidation reaction (HOR) on platinum nanoparticles (PtNPs) is explored....
Improving the performance of hydrogen evolution and oxidation reactions using precious metal catalys...
For small Pt nanoparticles (NPs), catalytic activity is, as observed, adversely affected by size in ...
Understanding oxygen reduction, key to much of electrochemical energy transformation technology, cru...
For small Pt nanoparticles (NPs), catalytic activity is, as observed, adversely affected by size in ...
The effect of interfacial pH during the surface cleaning of shape-selected PtNi nanoparticles was in...
The decomposition of H<sub>2</sub>O<sub>2</sub> to H<sub>2</sub>O and O<sub>2</sub> catalyzed by pla...
In the bulk solution phase the electrical potential of a single metallic nanoparticle can be control...
The underpotential deposition and removal of hydrogen from a mesoporous platinum nanoparticle surfac...
The underpotential deposition and removal of hydrogen from a mesoporous platinum nanoparticle surfac...