The anodic oxygen evolution reaction OER has significant importance in many electrochemical technologies. In proton exchange membrane water electrolyzers it plays a pivotal role for electrochemical energy conversion, yet sluggish kinetics and the corrosive environment during operation still compel significant advances in electrode materials to enable a widespread application. Up to date Iridium is known as the best catalyst material for the OER in acidic media due to its relatively high activity and long term stability. However, scarcity of iridium drives the development of strategies for its efficient utilization. One promising way would be the formation of mixtures in which the noble catalyst element is dispersed in the non noble matrix...
Progress in the development of proton exchange membrane (PEM) water electrolysis technology requires...
Mixed bimetallic oxides offer great opportunities for a systematic tuning of electrocatalytic activi...
Reducing precious metal content and improving the efficiency of proton exchange membrane water elect...
The anodic oxygen evolution reaction OER has significant importance in many electrochemical techno...
The morphology, crystallinity, and chemical state of well-defined Ir oxide nanoscale thin-film catal...
The utilization and development of efficient water electrolyzers for hydrogen production is currentl...
Owing to their superior electrocatalytic performance, non-stoichiometric mixed oxides are often cons...
Water splitting performed in acidic media relies on the exceptional performance of iridium-based mat...
International audienceAdvanced materials are needed to meet the requirements of devices designed for...
International audienceProton exchange membrane water electrolysers (PEMWEs) are perceived as one of ...
Multimetallic Ir-based systems offer significant opportunities for enhanced oxygen evolution electro...
The usage of iridium as an oxygen-evolution-reaction (OER) electrocatalyst requires very high atom e...
Progress in the development of proton exchange membrane (PEM) water electrolysis technology requires...
Mixed bimetallic oxides offer great opportunities for a systematic tuning of electrocatalytic activi...
Reducing precious metal content and improving the efficiency of proton exchange membrane water elect...
The anodic oxygen evolution reaction OER has significant importance in many electrochemical techno...
The morphology, crystallinity, and chemical state of well-defined Ir oxide nanoscale thin-film catal...
The utilization and development of efficient water electrolyzers for hydrogen production is currentl...
Owing to their superior electrocatalytic performance, non-stoichiometric mixed oxides are often cons...
Water splitting performed in acidic media relies on the exceptional performance of iridium-based mat...
International audienceAdvanced materials are needed to meet the requirements of devices designed for...
International audienceProton exchange membrane water electrolysers (PEMWEs) are perceived as one of ...
Multimetallic Ir-based systems offer significant opportunities for enhanced oxygen evolution electro...
The usage of iridium as an oxygen-evolution-reaction (OER) electrocatalyst requires very high atom e...
Progress in the development of proton exchange membrane (PEM) water electrolysis technology requires...
Mixed bimetallic oxides offer great opportunities for a systematic tuning of electrocatalytic activi...
Reducing precious metal content and improving the efficiency of proton exchange membrane water elect...