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 m 2 g -1 to 679 m 2 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-electro...
In this work, the effect of pH on a nitrogen-doped ordered mesoporous carbon catalyst for the oxygen...
The use of nitrogen-doped carbon materials as electrodes in supercapacitors is a promising area of r...
Carbon materials modified with nonmetallic elements, such as boron, fluorine, nitrogen, phosphorus, ...
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 ...
Nitrogen functionalization of a highly microporous activated carbon (SBET > 3000 m2/g), to be used a...
Electrochemical applications of carbon are wide and varied. They are used as electrodes for batterie...
Microporous activated carbon originating from coconut shell, as received or oxidized with nitric aci...
The specific capacitance of a highly porous, nitrogen-doped carbon is nearly tripled by orthogonal o...
Nitrogen functionalization (ca. 4 at. % NXPS) of a highly microporous activated carbon (SBET > 3000 ...
Nitrogen-enriched nonporous carbon materials derived from melamine-mica composites are subjected to ...
Four porous carbon samples with very similar porosities but visible differences in their surface che...
Nitrogen-doped carbons (NCs) are emerging as high-performance and inexpensive materials for electroc...
Nitrogen-containing superporous activated carbons were prepared by chemical polymerization of anilin...
Integrating a nanostructured carbon array on a conductive substrate remains a challenging task that ...
In this work, the effect of pH on a nitrogen-doped ordered mesoporous carbon catalyst for the oxygen...
The use of nitrogen-doped carbon materials as electrodes in supercapacitors is a promising area of r...
Carbon materials modified with nonmetallic elements, such as boron, fluorine, nitrogen, phosphorus, ...
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 ...
Nitrogen functionalization of a highly microporous activated carbon (SBET > 3000 m2/g), to be used a...
Electrochemical applications of carbon are wide and varied. They are used as electrodes for batterie...
Microporous activated carbon originating from coconut shell, as received or oxidized with nitric aci...
The specific capacitance of a highly porous, nitrogen-doped carbon is nearly tripled by orthogonal o...
Nitrogen functionalization (ca. 4 at. % NXPS) of a highly microporous activated carbon (SBET > 3000 ...
Nitrogen-enriched nonporous carbon materials derived from melamine-mica composites are subjected to ...
Four porous carbon samples with very similar porosities but visible differences in their surface che...
Nitrogen-doped carbons (NCs) are emerging as high-performance and inexpensive materials for electroc...
Nitrogen-containing superporous activated carbons were prepared by chemical polymerization of anilin...
Integrating a nanostructured carbon array on a conductive substrate remains a challenging task that ...
In this work, the effect of pH on a nitrogen-doped ordered mesoporous carbon catalyst for the oxygen...
The use of nitrogen-doped carbon materials as electrodes in supercapacitors is a promising area of r...
Carbon materials modified with nonmetallic elements, such as boron, fluorine, nitrogen, phosphorus, ...