The reduction of molecular oxygen in triplet and singlet spin states at metal electrodes is analyzed in the framework of quantum mechanical theory of charge transfer. Both outer- and inner-sphere mechanism is considered. Singlet oxygen is argued to be considerably more active in electron transfer processes. It is demonstrated that spin polarization may play a catalytic role, parallel with the effect of overlap of reactant orbitals with the d-band of a metal electrode. Our model is based on two main assumptions: (i) some metal surfaces favor the existence of singlet molecular oxygen in adsorbed state; and (ii) short-living singlet O2 molecules may appear as intermediates at some reduction steps. These two reasons are expected to increase the...
International audienceAlthough potentially powerful, molecular oxygen is an inert oxidant due to the...
Dioxygen reduction in the oxidative half-reaction of copper amine oxidases (CAOs) has been studied q...
The study of magnetic perovskite oxides has led to novel and very active compounds for O2 generation...
Oxygen evolution and reduction reactions play a critical role in determining the efficiency of the w...
Oxygen involved reactions, including oxygen reduction (ORR) and oxygen evolution reactions (OERs), p...
The dioxygen molecule has two bound states, singlet and triplet, which are different in energy, life...
The orbital physics relevant in electrocatalytic activity present subtle differencies between oxygen...
Over the past few decades, development of electrocatalysts for energy applications has extensively t...
The charge state of paramagnetic or nonmagnetic O2 adsorbed on a Pt(111) surface is analyzed using d...
Abstract: Although potentially powerful, molecular oxygen is an inert oxidant due to the triplet nat...
Controlled reduction of oxygen is important for developing clean energy technologies, such as fuel c...
Advances in theory and methods of quantum mechanics and in supercomputers are making it practical to...
The efficiency of rechargeable metal-air battery, water electrolysis systems, solar fuels devices is...
Exploring highly efficient catalysts for the oxygen evolution reaction (OER) is essential for water ...
The definition of the interplay between chemical composition, electro-magnetic configuration and ca...
International audienceAlthough potentially powerful, molecular oxygen is an inert oxidant due to the...
Dioxygen reduction in the oxidative half-reaction of copper amine oxidases (CAOs) has been studied q...
The study of magnetic perovskite oxides has led to novel and very active compounds for O2 generation...
Oxygen evolution and reduction reactions play a critical role in determining the efficiency of the w...
Oxygen involved reactions, including oxygen reduction (ORR) and oxygen evolution reactions (OERs), p...
The dioxygen molecule has two bound states, singlet and triplet, which are different in energy, life...
The orbital physics relevant in electrocatalytic activity present subtle differencies between oxygen...
Over the past few decades, development of electrocatalysts for energy applications has extensively t...
The charge state of paramagnetic or nonmagnetic O2 adsorbed on a Pt(111) surface is analyzed using d...
Abstract: Although potentially powerful, molecular oxygen is an inert oxidant due to the triplet nat...
Controlled reduction of oxygen is important for developing clean energy technologies, such as fuel c...
Advances in theory and methods of quantum mechanics and in supercomputers are making it practical to...
The efficiency of rechargeable metal-air battery, water electrolysis systems, solar fuels devices is...
Exploring highly efficient catalysts for the oxygen evolution reaction (OER) is essential for water ...
The definition of the interplay between chemical composition, electro-magnetic configuration and ca...
International audienceAlthough potentially powerful, molecular oxygen is an inert oxidant due to the...
Dioxygen reduction in the oxidative half-reaction of copper amine oxidases (CAOs) has been studied q...
The study of magnetic perovskite oxides has led to novel and very active compounds for O2 generation...