Iridium-based materials are among the most active and stable electrocatalysts for the oxygen evolution reaction. Amorphous iridium oxide structures are found to be more active than their crystalline counterparts. Herein, we combine synchrotron-based X-ray photoemission and absorption spectroscopies with theoretical calculations to investigate the electronic structure of Ir metal, rutile-type IrO2, and an amorphous IrOx. Theory and experiment show that while the Ir 4f line shape of Ir metal is well described by a simple Doniach–Šunjić function, the peculiar line shape of rutile-type IrO2 requires the addition of a shake-up satellite 1 eV above the main line. In the catalytically more active amorphous IrOx, we find that additional intensity a...
International audienceCombining high activity and stability, iridium oxide remains the gold standard...
In this paper, we present a comprehensive study on low hydration Ir/IrO2 electrodes, made of an Ir c...
Creating active and stable electrodes is an essential step toward efficient and durable electrolyzer...
Iridium-based materials are among the most active and stable electrocatalysts for the oxygen evoluti...
Iridium oxide based electrodes are among the most promising candidates for electrocatalyzing the oxy...
Iridium oxide based electrodes are among the most promising candidates for electrocatalyzing the oxy...
Tremendous effort has been devoted towards elucidating the fundamental reasons for the higher activi...
Hydrogen production by electrocatalytic water splitting will play a key role in the realization of a...
Water splitting performed in acidic media relies on the exceptional performance of iridium-based mat...
Oxygen electrochemistry plays a critical role in clean energy technologies such as fuel cells and el...
Altres ajuts: acord transformatiu CRUE-CSICH2 production through water electrolysis is a promising s...
International audienceCombining high activity and stability, iridium oxide remains the gold standard...
In this paper, we present a comprehensive study on low hydration Ir/IrO2 electrodes, made of an Ir c...
Creating active and stable electrodes is an essential step toward efficient and durable electrolyzer...
Iridium-based materials are among the most active and stable electrocatalysts for the oxygen evoluti...
Iridium oxide based electrodes are among the most promising candidates for electrocatalyzing the oxy...
Iridium oxide based electrodes are among the most promising candidates for electrocatalyzing the oxy...
Tremendous effort has been devoted towards elucidating the fundamental reasons for the higher activi...
Hydrogen production by electrocatalytic water splitting will play a key role in the realization of a...
Water splitting performed in acidic media relies on the exceptional performance of iridium-based mat...
Oxygen electrochemistry plays a critical role in clean energy technologies such as fuel cells and el...
Altres ajuts: acord transformatiu CRUE-CSICH2 production through water electrolysis is a promising s...
International audienceCombining high activity and stability, iridium oxide remains the gold standard...
In this paper, we present a comprehensive study on low hydration Ir/IrO2 electrodes, made of an Ir c...
Creating active and stable electrodes is an essential step toward efficient and durable electrolyzer...