Understanding the mechanisms associated with Pt/C electrocatalyst degradation in proton exchange membrane fuel cell (PEMFC) cathodes is critical for the future development of higher-performing materials; however, there is a lack of information regarding Pt coarsening under PEMFC operating conditions within the cathode catalyst layer. We report a direct and quantitative 3D study of Pt dispersions on carbon supports (high surface area carbon (HSAC), Vulcan XC-72, and graphitized carbon) with varied surface areas, graphitic character, and Pt loadings ranging from 5 to 40 wt %. This is accomplished both before and after catalyst-cycling accelerated stress tests (ASTs) through observations of the cathode catalyst layer of membrane electrode asse...
It is hard to directly visualize spectroscopic and atomic–nanoscopic information on the degraded Pt/...
In this paper we present detailed X-ray absorption fine structure (XAFS), X-ray diffraction (XRD) an...
Polymer electrolyte membrane fuel cells are a promising alternative energy source, capable of being ...
The impact of the carbon structure, the aging protocol, and the gas atmosphere on the degradation of...
The main objective of this work has been to develop the understanding of the effect of Pt particle d...
It is hard to directly visualize spectroscopic and atomic–nanoscopic information on the degraded Pt/...
This manuscript investigates the degradation of a Pt/Vulcan fuel cell catalyst under simulated start...
Catalytic degradation in proton exchange membrane fuel cells (PEMFCs) has always been a challenging ...
This manuscript investigates the degradation of a Pt/Vulcan fuel cell catalyst under simulated start...
We present a set of XPS (X-ray photoemission spectroscopy) measurements and detailed data-analysis o...
The identical location transmission electron microscopy (IL-TEM) approach is used for a comparative ...
The evolution of Pt nanoparticles supported on carbon nanotubes is analyzed before and after electro...
International audienceThe stability of carbon-supported electrocatalysts has been largely investigat...
The long-term durability of the catalyst layers of a low-working temperature fuel cell such as a pol...
Electrochemical measurements showed an ≈75% Pt surface area loss and an ≈40% specific activity loss ...
It is hard to directly visualize spectroscopic and atomic–nanoscopic information on the degraded Pt/...
In this paper we present detailed X-ray absorption fine structure (XAFS), X-ray diffraction (XRD) an...
Polymer electrolyte membrane fuel cells are a promising alternative energy source, capable of being ...
The impact of the carbon structure, the aging protocol, and the gas atmosphere on the degradation of...
The main objective of this work has been to develop the understanding of the effect of Pt particle d...
It is hard to directly visualize spectroscopic and atomic–nanoscopic information on the degraded Pt/...
This manuscript investigates the degradation of a Pt/Vulcan fuel cell catalyst under simulated start...
Catalytic degradation in proton exchange membrane fuel cells (PEMFCs) has always been a challenging ...
This manuscript investigates the degradation of a Pt/Vulcan fuel cell catalyst under simulated start...
We present a set of XPS (X-ray photoemission spectroscopy) measurements and detailed data-analysis o...
The identical location transmission electron microscopy (IL-TEM) approach is used for a comparative ...
The evolution of Pt nanoparticles supported on carbon nanotubes is analyzed before and after electro...
International audienceThe stability of carbon-supported electrocatalysts has been largely investigat...
The long-term durability of the catalyst layers of a low-working temperature fuel cell such as a pol...
Electrochemical measurements showed an ≈75% Pt surface area loss and an ≈40% specific activity loss ...
It is hard to directly visualize spectroscopic and atomic–nanoscopic information on the degraded Pt/...
In this paper we present detailed X-ray absorption fine structure (XAFS), X-ray diffraction (XRD) an...
Polymer electrolyte membrane fuel cells are a promising alternative energy source, capable of being ...