Replacing precious and nondurable platinum-based catalysts by economical and commercially available materials is a key issue addressed in contemporary fuel cell technology. Carbon-based nanomaterials display great potential to improve fuel tolerance and reduce the cost and stress on metal scalability. However, their relatively low catalytic activity limits the development and application of these catalysts. In this study, we have synthesized a nitrogen-doped carbon electrocatalyst from metal-organic frameworks and carbon nanotube composites, taking advantage of the existing N in the organic linker in the MOFs with more N added through ammonia treatment. The morphology and composition of synthesized catalysts were characterized by SEM, TEM, ...
Developing economical and commercially available materials to replace precious and nondurable platin...
In this study, metal-organic frameworks (MOFs) derived cobalt encapsulated in porous nitrogen-doped ...
Nonmetallic carbon-based nanomaterials (CNMs) are important in various potential applications, espec...
Replacing precious and nondurable platinum-based catalysts by economical and commercially available ...
Carbon nanostructures have emerged as a key material in nanotechnology and continuously find new are...
Platinum (Pt) is the one of the most efficient electrode catalysts for oxygen reduction reaction (OR...
Developing economical and commercially available materials to replace precious and nondurable platin...
Oxygen electrocatalysis is of great importance for many energy storage and conversion technologies, ...
Developing economical and commercially available materials to replace precious and nondurable platin...
Developing economical and commercially available materials to replace precious and nondurable platin...
Developing economical and commercially available materials to replace precious and nondurable platin...
Nitrogen-doped and undoped carbon nanotubes (CNTs) were synthesized from ferrocene, nickelocene, and...
Developing economical and commercially available materials to replace precious and nondurable platin...
The development of advanced electrocatalysts for oxygen reduction and evolution is of paramount sign...
bS Supporting Information ABSTRACT: Carbon nanotubes (CNTs) and nitrogen-doped carbon nanotubes (CNx...
Developing economical and commercially available materials to replace precious and nondurable platin...
In this study, metal-organic frameworks (MOFs) derived cobalt encapsulated in porous nitrogen-doped ...
Nonmetallic carbon-based nanomaterials (CNMs) are important in various potential applications, espec...
Replacing precious and nondurable platinum-based catalysts by economical and commercially available ...
Carbon nanostructures have emerged as a key material in nanotechnology and continuously find new are...
Platinum (Pt) is the one of the most efficient electrode catalysts for oxygen reduction reaction (OR...
Developing economical and commercially available materials to replace precious and nondurable platin...
Oxygen electrocatalysis is of great importance for many energy storage and conversion technologies, ...
Developing economical and commercially available materials to replace precious and nondurable platin...
Developing economical and commercially available materials to replace precious and nondurable platin...
Developing economical and commercially available materials to replace precious and nondurable platin...
Nitrogen-doped and undoped carbon nanotubes (CNTs) were synthesized from ferrocene, nickelocene, and...
Developing economical and commercially available materials to replace precious and nondurable platin...
The development of advanced electrocatalysts for oxygen reduction and evolution is of paramount sign...
bS Supporting Information ABSTRACT: Carbon nanotubes (CNTs) and nitrogen-doped carbon nanotubes (CNx...
Developing economical and commercially available materials to replace precious and nondurable platin...
In this study, metal-organic frameworks (MOFs) derived cobalt encapsulated in porous nitrogen-doped ...
Nonmetallic carbon-based nanomaterials (CNMs) are important in various potential applications, espec...