Identifying the catalytically active site(s) in the oxygen reduction reaction (ORR), under real-time electrochemical conditions, is critical to the development of fuel cells and other technologies. We have employed in situ synchrotron-based X-ray absorption spectroscopy (XAS) to investigate the synergistic interaction of a Co–Mn oxide catalyst which exhibits impressive ORR activity in alkaline fuel cells. X-ray absorption near edge structure (XANES) was used to track the dynamic structural changes of Co and Mn under both steady state (constant applied potential) and nonsteady state (potentiodynamic cyclic voltammetry, CV). Under steady state conditions, both Mn and Co valences decreased at lower potentials, indicating the conversion from Mn...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X‐ray absorption spectro...
Herein, we report the synthesis and electro-chemical oxygen evolution experiments for a graphene-sup...
Multielectron catalytic reactions, such as water oxidation, nitrogen reduction, or hydrogen producti...
In situ X-ray absorption spectroscopy (XAS) is a powerful technique that can be applied to electroch...
Implementation of chemical energy storage for a sustainable energy supply requires the rational impr...
Metal/nitrogen-doped carbons (M−N−C) are promising candidates as oxygen electrocatalysts due to thei...
This review focuses on the use of X-ray absorption and emission spectroscopy techniques using hard X...
Metal/nitrogen-doped carbons (M−N−C) are promising candidates as oxygen electrocatalysts due to thei...
Nanocrystalline multivalent metal spinels are considered as attractive non-precious oxygen electroca...
Bifunctional oxygen electrocatalysts play a vital role in important energy conversion and storage de...
Nonnoble metal catalysts are low-cost alternatives to Pt for the oxygen reduction reactions (ORRs), ...
Improving the stability of electrocatalysts for the oxygen evolution reaction OER through material...
For a detailed understanding and systematic optimization of fuel cell systems, in situ studies are a...
An in situ electrochemical X-ray absorption spectroscopy (XAS) cell has been fabricated that enables...
Electrodeposited manganese oxide films are promising catalysts for promoting the oxygen evolution re...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X‐ray absorption spectro...
Herein, we report the synthesis and electro-chemical oxygen evolution experiments for a graphene-sup...
Multielectron catalytic reactions, such as water oxidation, nitrogen reduction, or hydrogen producti...
In situ X-ray absorption spectroscopy (XAS) is a powerful technique that can be applied to electroch...
Implementation of chemical energy storage for a sustainable energy supply requires the rational impr...
Metal/nitrogen-doped carbons (M−N−C) are promising candidates as oxygen electrocatalysts due to thei...
This review focuses on the use of X-ray absorption and emission spectroscopy techniques using hard X...
Metal/nitrogen-doped carbons (M−N−C) are promising candidates as oxygen electrocatalysts due to thei...
Nanocrystalline multivalent metal spinels are considered as attractive non-precious oxygen electroca...
Bifunctional oxygen electrocatalysts play a vital role in important energy conversion and storage de...
Nonnoble metal catalysts are low-cost alternatives to Pt for the oxygen reduction reactions (ORRs), ...
Improving the stability of electrocatalysts for the oxygen evolution reaction OER through material...
For a detailed understanding and systematic optimization of fuel cell systems, in situ studies are a...
An in situ electrochemical X-ray absorption spectroscopy (XAS) cell has been fabricated that enables...
Electrodeposited manganese oxide films are promising catalysts for promoting the oxygen evolution re...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X‐ray absorption spectro...
Herein, we report the synthesis and electro-chemical oxygen evolution experiments for a graphene-sup...
Multielectron catalytic reactions, such as water oxidation, nitrogen reduction, or hydrogen producti...