It is hard to directly visualize spectroscopic and atomic–nanoscopic information on the degraded Pt/C cathode layer inside polymer electrolyte fuel cell (PEFC). However, it is mandatory to understand the preferential area, sequence, and relationship of the degradations of Pt nanoparticles and carbon support in the Pt/C cathode layer by directly observing the Pt/C cathode catalyst for the development of next-generation PEFC cathode catalysts. Here, the spectroscopic, chemical, and morphological visualization of the degradation of Pt/C cathode electrocatalysts in PEFC was performed successfully by a same-view combination technique of nano-X-ray absorption fine structure (XAFS) and transmission electron microscopy (TEM)/scanning TEM–energy-dis...
Identical location transmission electron microscopy (IL-TEM) is a powerful technique that has previo...
We have succeeded in simultaneous operando time-resolved quick X-ray absorption fine structure (QXAF...
Durability of carbon-supported platinum nanoparticle is one of the limiting factors for PEM fuel cel...
It is hard to directly visualize spectroscopic and atomic–nanoscopic information on the degraded Pt/...
In order to obtain a suitable design policy for the development of a next-generation polymer electro...
Abstract In this paper we present detailed X-ray absorption fine structure (XAFS), X-ray diffraction...
We have made the first success in the same-view imagings of 2D nano-XAFS and TEM/STEM-EDS under a hu...
We present a set of XPS (X-ray photoemission spectroscopy) measurements and detailed data-analysis o...
Knowledge of degradation pathways of catalyst/support ensembles aids the development of rational str...
Catalytic degradation in proton exchange membrane fuel cells (PEMFCs) has always been a challenging ...
State-of-the-art polymer electrolyte fuel cells require a conditioning period to reach optimized cel...
Understanding the mechanisms associated with Pt/C electrocatalyst degradation in proton exchange mem...
Governments and industries are pursuing the use of green hydrogen to achieve zero emissions, especia...
We performed in situ hard X-ray photoelectron spectroscopy (HAXPES) measurements of the electronic s...
The goal of this PhD research is to fundamentally understand the degradation mechanisms and durabili...
Identical location transmission electron microscopy (IL-TEM) is a powerful technique that has previo...
We have succeeded in simultaneous operando time-resolved quick X-ray absorption fine structure (QXAF...
Durability of carbon-supported platinum nanoparticle is one of the limiting factors for PEM fuel cel...
It is hard to directly visualize spectroscopic and atomic–nanoscopic information on the degraded Pt/...
In order to obtain a suitable design policy for the development of a next-generation polymer electro...
Abstract In this paper we present detailed X-ray absorption fine structure (XAFS), X-ray diffraction...
We have made the first success in the same-view imagings of 2D nano-XAFS and TEM/STEM-EDS under a hu...
We present a set of XPS (X-ray photoemission spectroscopy) measurements and detailed data-analysis o...
Knowledge of degradation pathways of catalyst/support ensembles aids the development of rational str...
Catalytic degradation in proton exchange membrane fuel cells (PEMFCs) has always been a challenging ...
State-of-the-art polymer electrolyte fuel cells require a conditioning period to reach optimized cel...
Understanding the mechanisms associated with Pt/C electrocatalyst degradation in proton exchange mem...
Governments and industries are pursuing the use of green hydrogen to achieve zero emissions, especia...
We performed in situ hard X-ray photoelectron spectroscopy (HAXPES) measurements of the electronic s...
The goal of this PhD research is to fundamentally understand the degradation mechanisms and durabili...
Identical location transmission electron microscopy (IL-TEM) is a powerful technique that has previo...
We have succeeded in simultaneous operando time-resolved quick X-ray absorption fine structure (QXAF...
Durability of carbon-supported platinum nanoparticle is one of the limiting factors for PEM fuel cel...