Oxygen Reduction Reaction (ORR) is the bottle-neck strategic reaction ruling the fuel cell efficiency process. The slow kinetics of the reaction require highly effective electrocatalysts for proper boosting. In this field, composite catalysts formed by carbon nanotubes functionalized with palladium(II) complexes showed surprising catalytic activity comparable to those of a commercial Pt electrode, but the catalytic mechanisms of these materials still remain open to discussion. In this paper, we propose the combination of experimental and theoretical results to unfold the elementary reaction steps underlying the ORR catalysis.
On the oxygen reduction reaction mechanism catalyzed by pd complexes on 2d carbon. A theoretical study / Bonechi M.; Giurlani W.; Vizza M.; Savastano M.; Stefani A.; Bianchi A.; Fontanesi C.; Innocenti M.. - In: CATALYSTS. - ISSN 2073-4344. - ELETTRONICO. - 11:(2021), pp. 764-774. [10.3390/catal11070764]
On the oxygen reduction reaction mechanism catalyzed by pd complexes on 2d carbon. A theoretical study
Bonechi M.;Giurlani W.;Vizza M.;Savastano M.;Bianchi A.;Innocenti M.
2021
Abstract
Oxygen Reduction Reaction (ORR) is the bottle-neck strategic reaction ruling the fuel cell efficiency process. The slow kinetics of the reaction require highly effective electrocatalysts for proper boosting. In this field, composite catalysts formed by carbon nanotubes functionalized with palladium(II) complexes showed surprising catalytic activity comparable to those of a commercial Pt electrode, but the catalytic mechanisms of these materials still remain open to discussion. In this paper, we propose the combination of experimental and theoretical results to unfold the elementary reaction steps underlying the ORR catalysis.File | Dimensione | Formato | |
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