The Ir-based Magneli phase titanium oxide supported catalyst is synthesized using the polyol approach. Its structure and activity in oxygen evolution reaction were evaluated by means of transmission electron microscopy, cyclic and linear sweep voltammetry. The catalyst structure is characterized by small Ir nanoparticles well dispersed over the support surface. The synthesized titanium suboxide supported catalyst showed very high activity in OER. Its mass activity ca. 3 times higher in comparison with the commercial IrOx catalys
The morphology, crystallinity, and chemical state of well-defined Ir oxide nanoscale thin-film catal...
International audienceThe need to increase the energy production from renewable sources and their in...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
To enable future large-scale generation of hydrogen via proton exchange membrane (PEM) electrolysis,...
PEM water electrolysis has recently emerged as one of the most promising technologies for large H2 p...
A multistep synthesis method is introduced to fabricate high performance IrOx /W-TiO2 catalyst for n...
The morphology, crystallinity, and chemical state of well-defined Ir oxide nanoscale thin-film catal...
Iridium oxide is the preferred catalyst for water oxidation but it is required to maximize its utili...
Iridium oxide supported on Vulcan XC-72 carbon black (IrO_2/C) as a cathode catalyst for polymer ele...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
The reduction in noble metal content for efficient oxygen evolution catalysis is a crucial aspect to...
The reduction in noble metal content for efficient oxygen evolution catalysis is a crucial aspect to...
International audienceDetermining the degradation mechanism of oxygen evolution reaction (OER) catal...
The morphology, crystallinity, and chemical state of well-defined Ir oxide nanoscale thin-film catal...
International audienceThe need to increase the energy production from renewable sources and their in...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
To enable future large-scale generation of hydrogen via proton exchange membrane (PEM) electrolysis,...
PEM water electrolysis has recently emerged as one of the most promising technologies for large H2 p...
A multistep synthesis method is introduced to fabricate high performance IrOx /W-TiO2 catalyst for n...
The morphology, crystallinity, and chemical state of well-defined Ir oxide nanoscale thin-film catal...
Iridium oxide is the preferred catalyst for water oxidation but it is required to maximize its utili...
Iridium oxide supported on Vulcan XC-72 carbon black (IrO_2/C) as a cathode catalyst for polymer ele...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
The reduction in noble metal content for efficient oxygen evolution catalysis is a crucial aspect to...
The reduction in noble metal content for efficient oxygen evolution catalysis is a crucial aspect to...
International audienceDetermining the degradation mechanism of oxygen evolution reaction (OER) catal...
The morphology, crystallinity, and chemical state of well-defined Ir oxide nanoscale thin-film catal...
International audienceThe need to increase the energy production from renewable sources and their in...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...