The electro-oxidation of water to oxygen is expected to play a major role in the development of future electrochemical energy conversion and storage technologies. However, the slow rate of the oxygen evolution reaction remains a key challenge that requires fundamental understanding to facilitate the design of more active and stable electrocatalysts. Here, we probe the local geometric ligand environment and electronic metal states of oxygen-coordinated iridium centres in nickel-leached IrNi@IrOx metal oxide core–shell nanoparticles under catalytic oxygen evolution conditions using operando X-ray absorption spectroscopy, resonant high-energy X-ray diffraction and differential atomic pair correlation analysis. Nickel leaching during catalyst a...
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...
Altres ajuts: acord transformatiu CRUE-CSICH2 production through water electrolysis is a promising s...
Iridium and ruthenium and their oxides/hydroxides are the best candidates for the oxygen evolution r...
Tremendous effort has been devoted towards elucidating the fundamental reasons for the higher activi...
Iridium oxide based electrodes are among the most promising candidates for electrocatalyzing the oxy...
A family of dealloyed metal–o<sub>x</sub>ide hybrid (M<sub>1</sub>M<sub>2</sub>@M<sub>1</sub>Ox) cor...
Heterogeneous catalysts in the form of atomically dispersed metals on a support provide the most eff...
Iridium oxide-based catalysts are uniquely active and stable in the oxygen evolution reaction. Theor...
Oxygen evolution reaction (OER) is the key anodic catalytic reaction for many important clean energy...
Iridium oxide-based catalysts are uniquely active and stable in the oxygen evolution reaction. Theor...
Iridium and ruthenium and their oxides/hydroxides are the best candidates for the oxygen evolution r...
Discovering highly active and stable electrocatalysts for the oxygen evolution reaction (OER) is cri...
Water splitting performed in acidic media relies on the exceptional performance of iridium-based mat...
This is an open access article published under an ACS AuthorChoice License, which permits copying an...
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...
Altres ajuts: acord transformatiu CRUE-CSICH2 production through water electrolysis is a promising s...
Iridium and ruthenium and their oxides/hydroxides are the best candidates for the oxygen evolution r...
Tremendous effort has been devoted towards elucidating the fundamental reasons for the higher activi...
Iridium oxide based electrodes are among the most promising candidates for electrocatalyzing the oxy...
A family of dealloyed metal–o<sub>x</sub>ide hybrid (M<sub>1</sub>M<sub>2</sub>@M<sub>1</sub>Ox) cor...
Heterogeneous catalysts in the form of atomically dispersed metals on a support provide the most eff...
Iridium oxide-based catalysts are uniquely active and stable in the oxygen evolution reaction. Theor...
Oxygen evolution reaction (OER) is the key anodic catalytic reaction for many important clean energy...
Iridium oxide-based catalysts are uniquely active and stable in the oxygen evolution reaction. Theor...
Iridium and ruthenium and their oxides/hydroxides are the best candidates for the oxygen evolution r...
Discovering highly active and stable electrocatalysts for the oxygen evolution reaction (OER) is cri...
Water splitting performed in acidic media relies on the exceptional performance of iridium-based mat...
This is an open access article published under an ACS AuthorChoice License, which permits copying an...
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...
Altres ajuts: acord transformatiu CRUE-CSICH2 production through water electrolysis is a promising s...