Pt-free catalyst towards oxygen reduction reaction (ORR) that is highly active, stable, and low-cost is highly desirable for commercialization of fuel cells but still remains unresolved. Here, we report a hybrid material of nitrogen-doped activated graphene/carbon nanotubes via a simple self-assembly of graphene and carbon nanotubes followed by KOH activation and high temperature annealing in NH3 for an efficient metal-free catalyst for ORR. The single-walled carbon nanotubes are well intercalated into nanoporous graphene layers, which lead to a high surface area and electrical conductivity of the hybrid. The nitrogen doping provides more reactive sites for ORR and significantly enhances the reaction properties. The hybrid structure exhibit...
In this work, large size (i.e., diameter > 100 nm) graphene tubes with nitrogen-doping are prepar...
In the process of developing non-metallic electro-catalyst for oxygen reduction reaction (ORR), simu...
The development of unique, reliable, and scalable synthesis strategies for producing heteroatom-dope...
There is a growing interest in oxygen electrode catalysts for oxygen reduction reaction (ORR) and ox...
There is a growing interest in oxygen electrode catalysts for oxygen reduction reaction (ORR) and ox...
Nitrogen-doped carbon materials, including nitrogen-doped carbon nanotubes (NCNTs) and nitrogen-dope...
Nitrogen-doped carbon materials, including nitrogen-doped carbon nanotubes (NCNTs) and nitrogen-dope...
To develop low-cost and efficient oxygen reduction reaction (ORR) catalysts, a novel hybrid comprisi...
Design and synthesis of oxygen reduction reaction (ORR) catalysts with both high activity and durabi...
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...
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...
In the process of developing non-metallic electro-catalyst for oxygen reduction reaction (ORR), simu...
Identifying catalytically active sites in graphene-based catalysts is critical to improved oxygen re...
In this work, large size (i.e., diameter > 100 nm) graphene tubes with nitrogen-doping are prepar...
In the process of developing non-metallic electro-catalyst for oxygen reduction reaction (ORR), simu...
The development of unique, reliable, and scalable synthesis strategies for producing heteroatom-dope...
There is a growing interest in oxygen electrode catalysts for oxygen reduction reaction (ORR) and ox...
There is a growing interest in oxygen electrode catalysts for oxygen reduction reaction (ORR) and ox...
Nitrogen-doped carbon materials, including nitrogen-doped carbon nanotubes (NCNTs) and nitrogen-dope...
Nitrogen-doped carbon materials, including nitrogen-doped carbon nanotubes (NCNTs) and nitrogen-dope...
To develop low-cost and efficient oxygen reduction reaction (ORR) catalysts, a novel hybrid comprisi...
Design and synthesis of oxygen reduction reaction (ORR) catalysts with both high activity and durabi...
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...
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...
In the process of developing non-metallic electro-catalyst for oxygen reduction reaction (ORR), simu...
Identifying catalytically active sites in graphene-based catalysts is critical to improved oxygen re...
In this work, large size (i.e., diameter > 100 nm) graphene tubes with nitrogen-doping are prepar...
In the process of developing non-metallic electro-catalyst for oxygen reduction reaction (ORR), simu...
The development of unique, reliable, and scalable synthesis strategies for producing heteroatom-dope...