International audienceBioinspired transition-metal catalysts seek to mimic the specific active site of metalloenzymes, as the multicopper oxidase, that can efficiently reduce dioxygen to water via a complete 4-electrons mechanism at low overpotential. However, the multicopper oxidase enzymes lack stability under operando conditions, hampering their application in fuel cell electrodes. Bioinspired multicopper catalysts present a remarkable electrocatalytic activity for the oxygen reduction reaction (ORR), where the structure and electronic properties of the ligands play a fundamental role. In this work, we explore the instantaneous catalytic activity and its evolution under operando conditions of two multicopper catalysts with different liga...
Development and optimization of non-platinum group metal (non-PGM) electrocatalysts for oxygen reduc...
The design of molecular oxygen evolution reaction OER catalysts requires fundamental mechanistic s...
The reductive activation of dioxygen, which is often coupled to other processes such as substrate hy...
The electrochemical oxygen reduction reaction (ORR) is an essential half-reaction for the utilizatio...
The oxygen reduction reaction (ORR) is the four electron and four proton reaction with oxygen to for...
International audienceHigh-potential multicopper oxidases (MCOs) are excellent catalysts able to per...
International audienceHigh-potential multicopper oxidases (MCOs) are excellent catalysts able to per...
Multicopper oxidases (MCO’s) possess an unusual trinuclear copper that catalyzes the reduction of ox...
The oxygen reduction reaction (ORR) is essential for energy conversion devices such as fuel cells a...
In this study, two simple Schiff base copper complexes [Cu(H2O)2(HL)]·2H2O (Complex 1) (H3L = 2-OH-4...
The number of active sites and their intrinsic activity are key factors in designing high-performanc...
In this study, two simple Schiff base copper complexes [Cu(H2O)2(HL)]·2H2O (Complex 1) (H3L = 2-OH-4...
The design of molecular oxygen-evolution reaction (OER) catalysts requires fundamental mechanistic s...
The design of molecular oxygen evolution reaction OER catalysts requires fundamental mechanistic s...
The design of molecular oxygen evolution reaction OER catalysts requires fundamental mechanistic s...
Development and optimization of non-platinum group metal (non-PGM) electrocatalysts for oxygen reduc...
The design of molecular oxygen evolution reaction OER catalysts requires fundamental mechanistic s...
The reductive activation of dioxygen, which is often coupled to other processes such as substrate hy...
The electrochemical oxygen reduction reaction (ORR) is an essential half-reaction for the utilizatio...
The oxygen reduction reaction (ORR) is the four electron and four proton reaction with oxygen to for...
International audienceHigh-potential multicopper oxidases (MCOs) are excellent catalysts able to per...
International audienceHigh-potential multicopper oxidases (MCOs) are excellent catalysts able to per...
Multicopper oxidases (MCO’s) possess an unusual trinuclear copper that catalyzes the reduction of ox...
The oxygen reduction reaction (ORR) is essential for energy conversion devices such as fuel cells a...
In this study, two simple Schiff base copper complexes [Cu(H2O)2(HL)]·2H2O (Complex 1) (H3L = 2-OH-4...
The number of active sites and their intrinsic activity are key factors in designing high-performanc...
In this study, two simple Schiff base copper complexes [Cu(H2O)2(HL)]·2H2O (Complex 1) (H3L = 2-OH-4...
The design of molecular oxygen-evolution reaction (OER) catalysts requires fundamental mechanistic s...
The design of molecular oxygen evolution reaction OER catalysts requires fundamental mechanistic s...
The design of molecular oxygen evolution reaction OER catalysts requires fundamental mechanistic s...
Development and optimization of non-platinum group metal (non-PGM) electrocatalysts for oxygen reduc...
The design of molecular oxygen evolution reaction OER catalysts requires fundamental mechanistic s...
The reductive activation of dioxygen, which is often coupled to other processes such as substrate hy...