In this work, we report the investigation of Fe and Co triphenylcorrole complexes supported on two different carbon supports as eletrocatalysts for the ORR in neutral pH media, comparing their performances with the corresponding tetra- phenylporphyrin complexes. Cyclic voltammetry experiments were acquired in neutral phosphate buffer demonstrating that corroles exhibit a superior catalytic activity towards ORR than porphyrins, as demonstrated by more positive oxygen reduc- tion peak potential (Epr) and half-wave potential (E1/2) values of corroles. Also, iron complexes performed better than cobalt ones, showing an ORR activity even superior to that of platinum taken as reference, as demonstrated by RDE experiments. We investigated the role ...
The coordination chemistry of corrole is one of the most intriguing aspects of this contracted porph...
Earth-abundant first row transition metal corrole complexes have played an important role in fundame...
The rational design and preparation of three A2B type Co(III)triarylcorroles with push- and pull-sub...
In this work, we report the investigation of Fe and Co triphenylcorrole complexes supported on two d...
Three series of cobalt(III) corroles were tested as catalysts for the electroreduction of dioxygen t...
International audienceOne of the most important challenge of nanosciences is the fabrication of func...
Fuel cells are considered as the only viable solution for long-range electromobility, but very rare ...
Five <i>meso</i>-substituted cobalt(III) corroles were examined as to their catalytic activity for ...
A series of Co(III) corrole complexes were tested as catalysts for the electroreduction of dioxygen ...
Corrole chemistry has witnessed an impressive boost in studies in the last 20 years, thanks to the ...
The development of efficient and stable electrocatalysts on the basis of non-precious metals (Co, Fe...
International audienceDeveloping efficient noble metal-free systems for electrocatalysis and the red...
Cobalt complexes have been extensively explored in catalyzing the oxygen reduction reaction (ORR), w...
Non-noble metal electrocatalysts not only are a solution to limited resources but also achieve highe...
The coordination chemistry of corrole is one of the most intriguing aspects of this contracted porph...
Earth-abundant first row transition metal corrole complexes have played an important role in fundame...
The rational design and preparation of three A2B type Co(III)triarylcorroles with push- and pull-sub...
In this work, we report the investigation of Fe and Co triphenylcorrole complexes supported on two d...
Three series of cobalt(III) corroles were tested as catalysts for the electroreduction of dioxygen t...
International audienceOne of the most important challenge of nanosciences is the fabrication of func...
Fuel cells are considered as the only viable solution for long-range electromobility, but very rare ...
Five <i>meso</i>-substituted cobalt(III) corroles were examined as to their catalytic activity for ...
A series of Co(III) corrole complexes were tested as catalysts for the electroreduction of dioxygen ...
Corrole chemistry has witnessed an impressive boost in studies in the last 20 years, thanks to the ...
The development of efficient and stable electrocatalysts on the basis of non-precious metals (Co, Fe...
International audienceDeveloping efficient noble metal-free systems for electrocatalysis and the red...
Cobalt complexes have been extensively explored in catalyzing the oxygen reduction reaction (ORR), w...
Non-noble metal electrocatalysts not only are a solution to limited resources but also achieve highe...
The coordination chemistry of corrole is one of the most intriguing aspects of this contracted porph...
Earth-abundant first row transition metal corrole complexes have played an important role in fundame...
The rational design and preparation of three A2B type Co(III)triarylcorroles with push- and pull-sub...