Enhancing the electrocatalytic activity of low-cost transition-metal oxides for oxygen reduction reaction (ORR) is a crucial challenge for extensive application of fuel cells. A promising approach demonstrated previously is the formation of catalysts with mixed valent metal active sites. Because catalysis happens primarily on the surface of the catalyst, we hypothesize that creating such active sites only on the surface will be an effective strategy for improving the catalytic activities. Here, we present a partial oxidation approach that grows δ-MnO2 nanoflakes on the surface of octahedron Mn3O4 nanocrystals for increasing their ORR activity. The δ-MnO2/Mn3O4 nanocomposite exhibits significantly improved ORR activity with a half-wave poten...
International audienceMnOx/C and Me-MnOx/C (Me = Ni, Mg) electrocatalysts prepared by chemical depos...
International audienceMnOx/C and Me-MnOx/C (Me = Ni, Mg) electrocatalysts prepared by chemical depos...
The rise in energy consumption is largely driven by the growth of population. The supply of energy t...
Oxygen reduction reaction (ORR) is becoming increasingly important with the development of fuel cell...
Despite a large effort in catalyst research over the past decade, the benefit of electrocatalysts fo...
In this article, manganese oxide nanorods with different crystalline structures, i.e., beta-MnO2, al...
International audienceKnowledge on the mechanisms of oxygen reduction reaction (ORR) and descriptors...
International audienceKnowledge on the mechanisms of oxygen reduction reaction (ORR) and descriptors...
International audienceKnowledge on the mechanisms of oxygen reduction reaction (ORR) and descriptors...
Establishing generic catalyst design principles by identifying structural features of materials that...
Development of catalysts for the electrochemical oxygen reactions, namely, oxygen reduction reaction...
The development of catalysts with high intrinsic activity towards the oxygen evolution reaction (OER...
The bulk chemistry has been successfully used as a descriptor for oxygen reduction reaction (ORR) ac...
Ordered mesoporous manganese oxides with different crystal structures and oxidation states (Meso-MnO...
International audienceMnOx/C and Me-MnOx/C (Me = Ni, Mg) electrocatalysts prepared by chemical depos...
International audienceMnOx/C and Me-MnOx/C (Me = Ni, Mg) electrocatalysts prepared by chemical depos...
International audienceMnOx/C and Me-MnOx/C (Me = Ni, Mg) electrocatalysts prepared by chemical depos...
The rise in energy consumption is largely driven by the growth of population. The supply of energy t...
Oxygen reduction reaction (ORR) is becoming increasingly important with the development of fuel cell...
Despite a large effort in catalyst research over the past decade, the benefit of electrocatalysts fo...
In this article, manganese oxide nanorods with different crystalline structures, i.e., beta-MnO2, al...
International audienceKnowledge on the mechanisms of oxygen reduction reaction (ORR) and descriptors...
International audienceKnowledge on the mechanisms of oxygen reduction reaction (ORR) and descriptors...
International audienceKnowledge on the mechanisms of oxygen reduction reaction (ORR) and descriptors...
Establishing generic catalyst design principles by identifying structural features of materials that...
Development of catalysts for the electrochemical oxygen reactions, namely, oxygen reduction reaction...
The development of catalysts with high intrinsic activity towards the oxygen evolution reaction (OER...
The bulk chemistry has been successfully used as a descriptor for oxygen reduction reaction (ORR) ac...
Ordered mesoporous manganese oxides with different crystal structures and oxidation states (Meso-MnO...
International audienceMnOx/C and Me-MnOx/C (Me = Ni, Mg) electrocatalysts prepared by chemical depos...
International audienceMnOx/C and Me-MnOx/C (Me = Ni, Mg) electrocatalysts prepared by chemical depos...
International audienceMnOx/C and Me-MnOx/C (Me = Ni, Mg) electrocatalysts prepared by chemical depos...
The rise in energy consumption is largely driven by the growth of population. The supply of energy t...