In this work, nitrogen-doped carbon with hierarchical porous and hollow sphere structure has been synthesized through a simple and facile route of spray drying using glycine as the nitrogen-containing carbon source. After KOH activation, the prepared material (NHPCA) shows a large specific surface area of 962m(2)g(-1) with moderate N-doping of 5.74% and exhibits a high specific capacitance of 271Fg(-1) in 6M KOH electrolyte at 1.0Ag(-1), remarkable rate capability and particularly stable cycling performance with no significant specific capacitance drop after 10000 cycles at 1.0Ag(-1). The excellent electrochemical properties come from the unique structure and the doping of nitrogen. The hierarchical pore structure improves the efficiency of...
Hollow, spherical nitrogen-rich porous carbon shells were prepared as supercapacitor electrode mater...
Abstract Micrometer size activated porous carbon spheres doped with nitrogen and sulfur (NSAPC) are ...
Hierarchical porous structures with surface nitrogen-doped porous carbon are current research topics...
In this work, nitrogen-doped carbon with hierarchical porous and hollow sphere structure has been sy...
A facile and sustainable procedure for the synthesis of nitrogen doped hierarchical porous carbons w...
The microstructure of carbon materials in terms of its specific surface area and pore structure by i...
Multiple heteroatom doping represents an effective strategy for improving the supercapacitive perfor...
Echinus-like nitrogen-doped carbon with a hierarchical porous structure was synthesized from green l...
Nitrogen-doped hierarchically porous carbons (HPCs), which are synthesized from benzoxazine resins, ...
Due to ever-increasing global energy demands and dwindling resources, there is a growing need to dev...
Porous carbon materials have received considerable attention recently, particularly in the energy fi...
Endothelium corneum gigeriae galli derived 3D hierarchical nitrogen-doped porous carbon was for the ...
Rational design and economic fabrication are essential to develop carbonic electrode materials with ...
Porous carbon has attracted great interest because of its distinctive structure and superior propert...
The plant waste pomelo peels are used as carbon precursors to fabricate nitrogen-doped hierarchical ...
Hollow, spherical nitrogen-rich porous carbon shells were prepared as supercapacitor electrode mater...
Abstract Micrometer size activated porous carbon spheres doped with nitrogen and sulfur (NSAPC) are ...
Hierarchical porous structures with surface nitrogen-doped porous carbon are current research topics...
In this work, nitrogen-doped carbon with hierarchical porous and hollow sphere structure has been sy...
A facile and sustainable procedure for the synthesis of nitrogen doped hierarchical porous carbons w...
The microstructure of carbon materials in terms of its specific surface area and pore structure by i...
Multiple heteroatom doping represents an effective strategy for improving the supercapacitive perfor...
Echinus-like nitrogen-doped carbon with a hierarchical porous structure was synthesized from green l...
Nitrogen-doped hierarchically porous carbons (HPCs), which are synthesized from benzoxazine resins, ...
Due to ever-increasing global energy demands and dwindling resources, there is a growing need to dev...
Porous carbon materials have received considerable attention recently, particularly in the energy fi...
Endothelium corneum gigeriae galli derived 3D hierarchical nitrogen-doped porous carbon was for the ...
Rational design and economic fabrication are essential to develop carbonic electrode materials with ...
Porous carbon has attracted great interest because of its distinctive structure and superior propert...
The plant waste pomelo peels are used as carbon precursors to fabricate nitrogen-doped hierarchical ...
Hollow, spherical nitrogen-rich porous carbon shells were prepared as supercapacitor electrode mater...
Abstract Micrometer size activated porous carbon spheres doped with nitrogen and sulfur (NSAPC) are ...
Hierarchical porous structures with surface nitrogen-doped porous carbon are current research topics...