To overcome the challenges of Na-O2 batteries with respect to efficiency, capacity, and cycle life as well as to develop cheap, metal-free, and abundant electrocatalysts, we explored boron and nitrogen-functionalized graphene aerogels prepared by the hydrothermal self-assembly of graphene oxide with subsequent thermal reduction. The results showed an improve of both the cycling overpotential and the coulombic efficiency for the functionalized graphene aerogels. However, the nitrogen-containing cathode presented a shortened cycle life and decreased charging stability. The postmortem analysis of the full discharge, and the full discharge and charge cathodes demonstrated that nitrogen functionalization triggered the formation of solid parasiti...
Graphene-based materials have been utilized as a promising approach in designing high-performance el...
Oxygen reduction reaction (ORR) is an important reaction in energy conversion systems such as fuel c...
The capacity of manganese dioxide (MnO2) deteriorates with cycling due to the irreversible changes i...
Reduced graphene oxide, an intensively investigated material for Li-ion batteries, has shown mostly ...
Reduced graphene oxide, an intensively investigated material for Li-ion batteries, has shown mostly ...
Graphene aerogels derived from a biomolecule‐assisted aqueous electrochemical exfoliation route are ...
Currently, efforts to address the energy needs of large-scale power applications have expedited the ...
Developing efficient electrocatalysts consisting of earth-abundant elements for oxygen evolution rea...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
A straightforward, one-step route has been established to fabricate reduced- (rGO) and nitrogen-dope...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
Three-dimensional nitrogen-doped graphene aerogel (N-GA) is facilely synthesized via a hydrothermal ...
Integrated approaches that expedite the production and processing of graphene into useful structures...
Sodium-ion batteries (SIBs) attract more attention because of sodium’s abundant availability, afford...
Owing to the 2D geometrical structure and extraordinary physicochemical properties, graphene and its...
Graphene-based materials have been utilized as a promising approach in designing high-performance el...
Oxygen reduction reaction (ORR) is an important reaction in energy conversion systems such as fuel c...
The capacity of manganese dioxide (MnO2) deteriorates with cycling due to the irreversible changes i...
Reduced graphene oxide, an intensively investigated material for Li-ion batteries, has shown mostly ...
Reduced graphene oxide, an intensively investigated material for Li-ion batteries, has shown mostly ...
Graphene aerogels derived from a biomolecule‐assisted aqueous electrochemical exfoliation route are ...
Currently, efforts to address the energy needs of large-scale power applications have expedited the ...
Developing efficient electrocatalysts consisting of earth-abundant elements for oxygen evolution rea...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
A straightforward, one-step route has been established to fabricate reduced- (rGO) and nitrogen-dope...
Carbon nanostructures are promising electrode materials for energy storage devices because of their ...
Three-dimensional nitrogen-doped graphene aerogel (N-GA) is facilely synthesized via a hydrothermal ...
Integrated approaches that expedite the production and processing of graphene into useful structures...
Sodium-ion batteries (SIBs) attract more attention because of sodium’s abundant availability, afford...
Owing to the 2D geometrical structure and extraordinary physicochemical properties, graphene and its...
Graphene-based materials have been utilized as a promising approach in designing high-performance el...
Oxygen reduction reaction (ORR) is an important reaction in energy conversion systems such as fuel c...
The capacity of manganese dioxide (MnO2) deteriorates with cycling due to the irreversible changes i...