Transition metal oxides (NiO x , MnO x) have been synthesized by reactive magnetron sputtering and analysed regarding their chemical composition with XPS to develop active catalysts for the oxygen evolution reaction in alkaline media. NiO x was investigated towards its temperature dependent deficient structure and the enhancement of the catalytic activity through these defects. The catalytic activity was evaluated with the help of operando Raman spectroscopy to monitor the active surface intermediates of NiO x and investigate a temperature dependent Ni III /Ni IV redox transition. The defect structure was concluded to greatly improve catalytic activity, capacitive charge storage, and redox processes. MnO x was deposited in three different ox...
Manganese-based systems are considered as candidate electrocatalysts for the electrochemical oxygen ...
Oxygen evolution and catalyst corrosion were studied side by side for electrodeposited MnO<sub>x</su...
Manganese-based systems are considered as candidate electrocatalysts for the electrochemical oxygen ...
Transition metal oxides (NiO x , MnO x) have been synthesized by reactive magnetron sputtering and a...
Manganese oxide catalysts exist in various forms of polymorphs, which have direct influence on their...
Manganese oxide (MnOₓ) is considered a promising material for the oxygen evolution reaction (OER) to...
In an effort to support the large-scale implementation of clean hydrogen in industry and society, th...
International audienceWater electrolysis powered by renewable energies is a promising technology to ...
An in situ Raman spectroscopic investigation has been carried out to identify the composition of the...
Water electrolysis powered by renewable energies is a promising technology to produce sustainable fo...
In situ Raman spectroscopy was used to characterize the synthesis and activation steps of mixed meta...
Water electrolysis powered by renewable energies is a promising technology to produce sustainable fo...
Herein, we report the synthesis and electro-chemical oxygen evolution experiments for a graphene-sup...
As the energy needs of society continue to grow, and pressure to produce fewer emissions continues t...
The elucidation of structure–reactivity relationships in supported metal oxide catalysts has proven ...
Manganese-based systems are considered as candidate electrocatalysts for the electrochemical oxygen ...
Oxygen evolution and catalyst corrosion were studied side by side for electrodeposited MnO<sub>x</su...
Manganese-based systems are considered as candidate electrocatalysts for the electrochemical oxygen ...
Transition metal oxides (NiO x , MnO x) have been synthesized by reactive magnetron sputtering and a...
Manganese oxide catalysts exist in various forms of polymorphs, which have direct influence on their...
Manganese oxide (MnOₓ) is considered a promising material for the oxygen evolution reaction (OER) to...
In an effort to support the large-scale implementation of clean hydrogen in industry and society, th...
International audienceWater electrolysis powered by renewable energies is a promising technology to ...
An in situ Raman spectroscopic investigation has been carried out to identify the composition of the...
Water electrolysis powered by renewable energies is a promising technology to produce sustainable fo...
In situ Raman spectroscopy was used to characterize the synthesis and activation steps of mixed meta...
Water electrolysis powered by renewable energies is a promising technology to produce sustainable fo...
Herein, we report the synthesis and electro-chemical oxygen evolution experiments for a graphene-sup...
As the energy needs of society continue to grow, and pressure to produce fewer emissions continues t...
The elucidation of structure–reactivity relationships in supported metal oxide catalysts has proven ...
Manganese-based systems are considered as candidate electrocatalysts for the electrochemical oxygen ...
Oxygen evolution and catalyst corrosion were studied side by side for electrodeposited MnO<sub>x</su...
Manganese-based systems are considered as candidate electrocatalysts for the electrochemical oxygen ...