Accurately determining the morphology and hence the true surface areas of catalytic nanoparticles remains challenging. For many chemically synthesised nanoparticle suspensions conventional BET surface area measurements are often not feasible due to the large quantities of material required. For platinum, a paradigmatic catalyst, this issue is further complicated by the propensity of this metal to form porous aggregate structures comprised of smaller (ca. 2-5 nm) crystallites as opposed to continuous solid structures. This dendritic/porous particulate morphology leads to a large but poorly defined 'active' surface which is difficult to measure accurately. Here we compare, single nanoparticle electrochemistry with three dimensional (3D) elect...
Chemical dealloying of Pt binary alloy precursors has emerged as a novel and important preparation p...
Chemical dealloying of Pt binary alloy precursors has emerged as a novel and important preparation p...
We have employed identical location transmission electron microscopy (IL-TEM) to study changes in th...
Nanoporous Pt nanoparticles (NPs) are promising fuel cell catalysts due to their large surface area ...
The porosity of platinum nanoparticles (PtNPs) is explored for the first time using tag-redox coulom...
The specimen preparation method is crucial for how much information can be gained from transmission ...
The porosity of platinum nanoparticle aggregates (PtNPs) is investigated electrochemically via parti...
Dendritic/mesoporous nanoparticle structures arise naturally and result from aggregation based growt...
The thesis aims to develop methods to explore how catalyst structure and composition affect catalyti...
This thesis reports experimental work with two main aims: the first is the investigation of single ...
We study the atomistic structure of Pt catalyst nanoparticles using HRTEM (high-resolution transmiss...
Pt nanoparticles play an essential role in a wide variety of catalytic reactions. The activity of th...
International audienceStudying model nanoparticles is one approach to better understand the structur...
Studying model nanoparticles is one approach to better understand the structural evolution of a cata...
Abstract: Quantitative measurement of the number of active surface sites on two-dimensional (2D) cat...
Chemical dealloying of Pt binary alloy precursors has emerged as a novel and important preparation p...
Chemical dealloying of Pt binary alloy precursors has emerged as a novel and important preparation p...
We have employed identical location transmission electron microscopy (IL-TEM) to study changes in th...
Nanoporous Pt nanoparticles (NPs) are promising fuel cell catalysts due to their large surface area ...
The porosity of platinum nanoparticles (PtNPs) is explored for the first time using tag-redox coulom...
The specimen preparation method is crucial for how much information can be gained from transmission ...
The porosity of platinum nanoparticle aggregates (PtNPs) is investigated electrochemically via parti...
Dendritic/mesoporous nanoparticle structures arise naturally and result from aggregation based growt...
The thesis aims to develop methods to explore how catalyst structure and composition affect catalyti...
This thesis reports experimental work with two main aims: the first is the investigation of single ...
We study the atomistic structure of Pt catalyst nanoparticles using HRTEM (high-resolution transmiss...
Pt nanoparticles play an essential role in a wide variety of catalytic reactions. The activity of th...
International audienceStudying model nanoparticles is one approach to better understand the structur...
Studying model nanoparticles is one approach to better understand the structural evolution of a cata...
Abstract: Quantitative measurement of the number of active surface sites on two-dimensional (2D) cat...
Chemical dealloying of Pt binary alloy precursors has emerged as a novel and important preparation p...
Chemical dealloying of Pt binary alloy precursors has emerged as a novel and important preparation p...
We have employed identical location transmission electron microscopy (IL-TEM) to study changes in th...