A nitrogen-doped porous carbon monolith was synthesized as a pseudo-capacitive electrode for use in alkaline supercapacitors. Ammonia-assisted carbonization was used to dope the surface with nitrogen heteroatoms in a way that replaced carbon atoms but kept the oxygen content constant. Ammonia treatment expanded the micropore size-distributions and increased the specific surface area from 383 m2?g-1 to 679 m2?g-1. The nitrogen-containing porous carbon material showed a higher capacitance (246 F?g-1) in comparison with the nitrogen-free one (186 F?g-1). Ex situ electrochemical spectroscopy was used to investigate the evolution of the nitrogen-containing functional groups on the surface of the N-doped carbon electrodes in a three-electrode cel...
Integrating a nanostructured carbon array on a conductive substrate remains a challenging task that ...
The use of nitrogen-doped carbon materials as electrodes in supercapacitors is a promising area of r...
Nitrogen functionalization of a highly microporous activated carbon (BET surface area higher than 30...
A nitrogen-doped porous carbon monolith was synthesized as a pseudo-capacitive electrode for use in ...
A nitrogen-doped porous carbon monolith was synthesized as a pseudo-capacitive electrode for use in ...
Electrochemical applications of carbon are wide and varied. They are used as electrodes for batterie...
Nitrogen functionalization of a highly microporous activated carbon (SBET > 3000 m2/g), to be used a...
The specific capacitance of a highly porous, nitrogen-doped carbon is nearly tripled by orthogonal o...
Microporous activated carbon originating from coconut shell, as received or oxidized with nitric aci...
Nitrogen functionalization (ca. 4 at. % NXPS) of a highly microporous activated carbon (SBET > 3000 ...
Four porous carbon samples with very similar porosities but visible differences in their surface che...
Nitrogen-enriched nonporous carbon materials derived from melamine-mica composites are subjected to ...
Nitrogen-doped carbons (NCs) are emerging as high-performance and inexpensive materials for electroc...
In this work, the effect of pH on a nitrogen-doped ordered mesoporous carbon catalyst for the oxygen...
Due to ever-increasing global energy demands and dwindling resources, there is a growing need to dev...
Integrating a nanostructured carbon array on a conductive substrate remains a challenging task that ...
The use of nitrogen-doped carbon materials as electrodes in supercapacitors is a promising area of r...
Nitrogen functionalization of a highly microporous activated carbon (BET surface area higher than 30...
A nitrogen-doped porous carbon monolith was synthesized as a pseudo-capacitive electrode for use in ...
A nitrogen-doped porous carbon monolith was synthesized as a pseudo-capacitive electrode for use in ...
Electrochemical applications of carbon are wide and varied. They are used as electrodes for batterie...
Nitrogen functionalization of a highly microporous activated carbon (SBET > 3000 m2/g), to be used a...
The specific capacitance of a highly porous, nitrogen-doped carbon is nearly tripled by orthogonal o...
Microporous activated carbon originating from coconut shell, as received or oxidized with nitric aci...
Nitrogen functionalization (ca. 4 at. % NXPS) of a highly microporous activated carbon (SBET > 3000 ...
Four porous carbon samples with very similar porosities but visible differences in their surface che...
Nitrogen-enriched nonporous carbon materials derived from melamine-mica composites are subjected to ...
Nitrogen-doped carbons (NCs) are emerging as high-performance and inexpensive materials for electroc...
In this work, the effect of pH on a nitrogen-doped ordered mesoporous carbon catalyst for the oxygen...
Due to ever-increasing global energy demands and dwindling resources, there is a growing need to dev...
Integrating a nanostructured carbon array on a conductive substrate remains a challenging task that ...
The use of nitrogen-doped carbon materials as electrodes in supercapacitors is a promising area of r...
Nitrogen functionalization of a highly microporous activated carbon (BET surface area higher than 30...