Carbon nanotubes (CNTs), graphene aerogels (GAs), and their hybrid (CNT-GA) prepared by hydrothermal treatment were tested in the electrocatalytic oxygen reduction reaction (ORR). The importance of porous structure derived from the combination of mesoporosity coming from CNTs with macroporosity stemming from GAs was evidenced because the hybrid carbon material exhibited synergistic performance in terms of kinetic current and onset potential. Different electrocatalysts were prepared based on these hybrids doped with nitrogen using different precursors and also supporting Fe nanoparticles. N-doped carbon hybrids showed higher electrocatalytic activity than their undoped counterparts. Nevertheless, both doped and undoped materials provided a m...
Identifying catalytically active sites in graphene-based catalysts is critical to improved oxygen re...
We demonstrated highly active and durable hybrid catalysts (HCs) composed of small reduced graphene ...
Identifying catalytically active sites in graphene-based catalysts is critical to improved oxygen re...
9 figures, 1 table.-- Supplementary material available.Carbon nanotubes (CNTs), graphene aerogels (G...
In this study, a low-cost and environmentally friendly method is developed to synthesize cobalt and ...
In this study, a low-cost and environmentally friendly method is developed to synthesize cobalt and ...
The reactive and stable catalysts for the oxygen reduction reaction are highly desirable for low tem...
The reactive and stable catalysts for the oxygen reduction reaction are highly desirable for low tem...
The reactive and stable catalysts for the oxygen reduction reaction are highly desirable for low tem...
The potential of graphene–multi-walled-carbon nanotube (G-M) hybrids prepared by the one-pot m...
The potential of graphene–multi-walled-carbon nanotube (G-M) hybrids prepared by the one-pot m...
To develop low-cost and efficient oxygen reduction reaction (ORR) catalysts, a novel hybrid comprisi...
Pt-free catalyst towards oxygen reduction reaction (ORR) that is highly active, stable, and low-cost...
We report metal-free electrocatalysts to enhance utilization of dissolved and gaseous oxygen during ...
Identifying catalytically active sites in graphene-based catalysts is critical to improved oxygen re...
Identifying catalytically active sites in graphene-based catalysts is critical to improved oxygen re...
We demonstrated highly active and durable hybrid catalysts (HCs) composed of small reduced graphene ...
Identifying catalytically active sites in graphene-based catalysts is critical to improved oxygen re...
9 figures, 1 table.-- Supplementary material available.Carbon nanotubes (CNTs), graphene aerogels (G...
In this study, a low-cost and environmentally friendly method is developed to synthesize cobalt and ...
In this study, a low-cost and environmentally friendly method is developed to synthesize cobalt and ...
The reactive and stable catalysts for the oxygen reduction reaction are highly desirable for low tem...
The reactive and stable catalysts for the oxygen reduction reaction are highly desirable for low tem...
The reactive and stable catalysts for the oxygen reduction reaction are highly desirable for low tem...
The potential of graphene–multi-walled-carbon nanotube (G-M) hybrids prepared by the one-pot m...
The potential of graphene–multi-walled-carbon nanotube (G-M) hybrids prepared by the one-pot m...
To develop low-cost and efficient oxygen reduction reaction (ORR) catalysts, a novel hybrid comprisi...
Pt-free catalyst towards oxygen reduction reaction (ORR) that is highly active, stable, and low-cost...
We report metal-free electrocatalysts to enhance utilization of dissolved and gaseous oxygen during ...
Identifying catalytically active sites in graphene-based catalysts is critical to improved oxygen re...
Identifying catalytically active sites in graphene-based catalysts is critical to improved oxygen re...
We demonstrated highly active and durable hybrid catalysts (HCs) composed of small reduced graphene ...
Identifying catalytically active sites in graphene-based catalysts is critical to improved oxygen re...