Nitrogen-doped graphene/graphene-tube nanocomposites are prepared by a hightemperature approach using a newly designed cage-containing metal-organic framework (MOF) to template nitrogen/carbon (dicyandiamide) and iron precursors. The resulting N-Fe-MOF catalysts universally exhibit high oxygen-reduction activity in acidic, alkaline, and non-aqueous electrolytes and superior cathode performance in Li-O2 batteries.close6
A metal-organic framework (MOF) seed-mediated deposition route is developed to synthesize MOF/graphe...
Developing economical and commercially available materials to replace precious and nondurable platin...
Developing economical and commercially available materials to replace precious and nondurable platin...
In this work, large size (i.e., diameter > 100 nm) graphene tubes with nitrogen-doping are prepar...
Here we report a nitrogen-doped graphene modified metal-organic framework (N-G/MOF) catalyst, a prom...
Much attention has been devoted to rechargeable Li-O2 batteries recently due to their very high ener...
Abstract We report on the design of a bio-inspired composite as a noble-metal-free electrocatalyst f...
This work is oriented to take advantage of graphene and nanotubes features in electrocatalysis. At p...
A metal–organic framework (MOF) seed-mediated deposition route is developed to synthesize MOF/graphe...
The development of unique, reliable, and scalable synthesis strategies for producing heteroatom-dope...
The development of effective and precious‐metal‐free electrocatalysts for the oxygen evolution react...
Developing economical and commercially available materials to replace precious and nondurable platin...
A metal–organic framework (MOF) seed-mediated deposition route is developed to synthesize MOF/graphe...
The development of effective and precious‐metal‐free electrocatalysts for the oxygen evolution react...
Developing economical and commercially available materials to replace precious and nondurable platin...
A metal-organic framework (MOF) seed-mediated deposition route is developed to synthesize MOF/graphe...
Developing economical and commercially available materials to replace precious and nondurable platin...
Developing economical and commercially available materials to replace precious and nondurable platin...
In this work, large size (i.e., diameter > 100 nm) graphene tubes with nitrogen-doping are prepar...
Here we report a nitrogen-doped graphene modified metal-organic framework (N-G/MOF) catalyst, a prom...
Much attention has been devoted to rechargeable Li-O2 batteries recently due to their very high ener...
Abstract We report on the design of a bio-inspired composite as a noble-metal-free electrocatalyst f...
This work is oriented to take advantage of graphene and nanotubes features in electrocatalysis. At p...
A metal–organic framework (MOF) seed-mediated deposition route is developed to synthesize MOF/graphe...
The development of unique, reliable, and scalable synthesis strategies for producing heteroatom-dope...
The development of effective and precious‐metal‐free electrocatalysts for the oxygen evolution react...
Developing economical and commercially available materials to replace precious and nondurable platin...
A metal–organic framework (MOF) seed-mediated deposition route is developed to synthesize MOF/graphe...
The development of effective and precious‐metal‐free electrocatalysts for the oxygen evolution react...
Developing economical and commercially available materials to replace precious and nondurable platin...
A metal-organic framework (MOF) seed-mediated deposition route is developed to synthesize MOF/graphe...
Developing economical and commercially available materials to replace precious and nondurable platin...
Developing economical and commercially available materials to replace precious and nondurable platin...