Iridium oxide-based catalysts are uniquely active and stable in the oxygen evolution reaction. Theoretical work attributes their activity to oxyl or μ1-O species. Verifying this intermediate experimentally has, however, been challenging. In the present study, these challenges were overcome by combining theory with new experimental strategies. Ab initio molecular dynamics of the solid–liquid interface were used to predict spectroscopic features, whereas sample architecture, developed for surface-sensitive X-ray spectroscopy of electrocatalysts in confined liquid, was used to search for these species under realistic conditions. Through this approach, we have identified μ1-O species during oxygen evolution. Potentiodynamic X-ray absorption add...
Creating active and stable electrodes is an essential step toward efficient and durable electrolyzer...
AbstractThe electrochemical stability of thermally prepared Ir oxide films is investigated using a s...
Tremendous effort has been devoted towards elucidating the fundamental reasons for the higher activi...
Iridium oxide-based catalysts are uniquely active and stable in the oxygen evolution reaction. Theor...
An iridium oxide nanoparticle electrocatalyst under oxygen evolution reaction conditions was probed ...
Water splitting performed in acidic media relies on the exceptional performance of iridium-based mat...
Iridium and ruthenium and their oxides/hydroxides are the best candidates for the oxygen evolution r...
The topmost atomic layers of electrocatalysts determine the mechanism and kinetics of reactions in m...
The electro-oxidation of water to oxygen is expected to play a major role in the development of futu...
Progress in the development of proton exchange membrane (PEM) water electrolysis technology requires...
Uncovering the dynamics of active sites in the working conditions is important yet challenging. Here...
Progress in the development of proton exchange membrane (PEM) water electrolysis technology requires...
Iridium and ruthenium and their oxides/hydroxides are the best candidates for the oxygen evolution r...
The electrochemical stability of thermally prepared Ir oxide films is investigated using a scanning ...
Heterogeneous catalysts in the form of atomically dispersed metals on a support provide the most eff...
Creating active and stable electrodes is an essential step toward efficient and durable electrolyzer...
AbstractThe electrochemical stability of thermally prepared Ir oxide films is investigated using a s...
Tremendous effort has been devoted towards elucidating the fundamental reasons for the higher activi...
Iridium oxide-based catalysts are uniquely active and stable in the oxygen evolution reaction. Theor...
An iridium oxide nanoparticle electrocatalyst under oxygen evolution reaction conditions was probed ...
Water splitting performed in acidic media relies on the exceptional performance of iridium-based mat...
Iridium and ruthenium and their oxides/hydroxides are the best candidates for the oxygen evolution r...
The topmost atomic layers of electrocatalysts determine the mechanism and kinetics of reactions in m...
The electro-oxidation of water to oxygen is expected to play a major role in the development of futu...
Progress in the development of proton exchange membrane (PEM) water electrolysis technology requires...
Uncovering the dynamics of active sites in the working conditions is important yet challenging. Here...
Progress in the development of proton exchange membrane (PEM) water electrolysis technology requires...
Iridium and ruthenium and their oxides/hydroxides are the best candidates for the oxygen evolution r...
The electrochemical stability of thermally prepared Ir oxide films is investigated using a scanning ...
Heterogeneous catalysts in the form of atomically dispersed metals on a support provide the most eff...
Creating active and stable electrodes is an essential step toward efficient and durable electrolyzer...
AbstractThe electrochemical stability of thermally prepared Ir oxide films is investigated using a s...
Tremendous effort has been devoted towards elucidating the fundamental reasons for the higher activi...