Electrodeposited manganese oxide films are promising catalysts for promoting the oxygen evolution reaction (OER), especially in acidic solutions. The activity of these catalysts is known to be enhanced by the introduction of Mn3+ We present in situ electrochemical and X-ray absorption spectroscopic studies, which reveal that Mn3+ may be introduced into MnO2 by an electrochemically induced comproportionation reaction with Mn2+ and that Mn3+ persists in OER active films. Extended X-ray absorption fine structure (EXAFS) spectra of the Mn3+-activated films indicate a decrease in the Mn-O coordination number, and Raman microspectroscopy reveals the presence of distorted Mn-O environments. Computational studies show that Mn3+ is kinetically trapp...
Manganese-based systems are considered as candidate electrocatalysts for the electrochemical oxygen ...
Improving the stability of electrocatalysts for the oxygen evolution reaction OER through material...
alpha Mn2O3 is of interest as a low cost and environmentally benign electrocatalyst for the Oxygen E...
Electrodeposited manganese oxide films are promising catalysts for promoting the oxygen evolution re...
Oxygen evolution and catalyst corrosion were studied side by side for electrodeposited MnO<sub>x</su...
Oxygen evolution and catalyst corrosion were studied side by side for electrodeposited MnO<sub><i>x<...
Manganese oxides with rich redox chemistry have been widely used in (electro)catalysis in applicatio...
Catalysis of the oxygen evolution reaction (OER) by earth-abundant materials in the near-neutral pH ...
Different manganese oxide phases were prepared as thin films to elucidate their structure function r...
In situ X-ray absorption spectroscopy (XAS) is a powerful technique that can be applied to electroch...
Despite a large effort in catalyst research over the past decade, the benefit of electrocatalysts fo...
International audienceKnowledge on the mechanisms of oxygen reduction reaction (ORR) and descriptors...
Manganese-based systems are considered as candidate electrocatalysts for the electrochemical oxygen ...
Electrodeposited manganese oxide films (MnOx) are promising stable oxygen evolution catalysts. They ...
Manganese oxides have received much attention over the years among the wide range of electrocatalyst...
Manganese-based systems are considered as candidate electrocatalysts for the electrochemical oxygen ...
Improving the stability of electrocatalysts for the oxygen evolution reaction OER through material...
alpha Mn2O3 is of interest as a low cost and environmentally benign electrocatalyst for the Oxygen E...
Electrodeposited manganese oxide films are promising catalysts for promoting the oxygen evolution re...
Oxygen evolution and catalyst corrosion were studied side by side for electrodeposited MnO<sub>x</su...
Oxygen evolution and catalyst corrosion were studied side by side for electrodeposited MnO<sub><i>x<...
Manganese oxides with rich redox chemistry have been widely used in (electro)catalysis in applicatio...
Catalysis of the oxygen evolution reaction (OER) by earth-abundant materials in the near-neutral pH ...
Different manganese oxide phases were prepared as thin films to elucidate their structure function r...
In situ X-ray absorption spectroscopy (XAS) is a powerful technique that can be applied to electroch...
Despite a large effort in catalyst research over the past decade, the benefit of electrocatalysts fo...
International audienceKnowledge on the mechanisms of oxygen reduction reaction (ORR) and descriptors...
Manganese-based systems are considered as candidate electrocatalysts for the electrochemical oxygen ...
Electrodeposited manganese oxide films (MnOx) are promising stable oxygen evolution catalysts. They ...
Manganese oxides have received much attention over the years among the wide range of electrocatalyst...
Manganese-based systems are considered as candidate electrocatalysts for the electrochemical oxygen ...
Improving the stability of electrocatalysts for the oxygen evolution reaction OER through material...
alpha Mn2O3 is of interest as a low cost and environmentally benign electrocatalyst for the Oxygen E...