© 2002-2012 IEEE. Despite having remarkable surface area (2630 m2/g for graphene), the graphene-based supercapacitors are still unable to attain the necessary energy density due to poor accessibility of surface area and low quantum capacitance. In this paper, we demonstrate an effective way to improve the quantum capacitance of graphene through plane wave density functional theory calculations. We used pyrrolic-type nitrogen doping to demonstrate extremely high quantum capacitances for graphene. An impressive 486.32 μF/cm2 quantum capacitance has been observed at a pyrrolic concentration of 6.38%. Our calculations suggest that the quantum capacitance of graphene increases with the pyrrolic concentration. We have also investigated the impact...
Quantum capacitance of graphene plays a significant role for graphene's applications in electrochemi...
Low-energy density has long been the major limitation to the application of supercapacitors. Introdu...
The quantum capacitance from large area, 6- to 7-layered graphene, and chemically modified graphene,...
Application of the functionalized graphene as electrode for supercapacitor has received a lot of att...
Because of their many advantages, graphene and graphene-based materials are used in supercapacitor e...
Density functional calculations were performed on 15 functionalized graphene models to investigate t...
Quantum capacitance (QC) is a very important character of the graphene cathode in lithium ion capaci...
Quantum capacitance (QC) is a very important character of the graphene cathode in lithium ion capaci...
With first-principles density functional theory calculations, we demonstrate that quantum capacitanc...
885-891Electrodes fabricated using graphene are quite promising for electric double layer capacitors...
Using density-functional theory calculations on a variety of model surfaces, we demonstrate that the...
The talk presented at 29th Annual General Meeting Of Materials Research Society Of India And Nationa...
Many researchers have used nitrogen (N) as a dopant and/or N-containing functional groups to enhance...
Graphene has been heralded as a promising electrode material for high energy and power density elect...
Graphene-based electrodes have been widely tested and used in electrochemical double layer capacitor...
Quantum capacitance of graphene plays a significant role for graphene's applications in electrochemi...
Low-energy density has long been the major limitation to the application of supercapacitors. Introdu...
The quantum capacitance from large area, 6- to 7-layered graphene, and chemically modified graphene,...
Application of the functionalized graphene as electrode for supercapacitor has received a lot of att...
Because of their many advantages, graphene and graphene-based materials are used in supercapacitor e...
Density functional calculations were performed on 15 functionalized graphene models to investigate t...
Quantum capacitance (QC) is a very important character of the graphene cathode in lithium ion capaci...
Quantum capacitance (QC) is a very important character of the graphene cathode in lithium ion capaci...
With first-principles density functional theory calculations, we demonstrate that quantum capacitanc...
885-891Electrodes fabricated using graphene are quite promising for electric double layer capacitors...
Using density-functional theory calculations on a variety of model surfaces, we demonstrate that the...
The talk presented at 29th Annual General Meeting Of Materials Research Society Of India And Nationa...
Many researchers have used nitrogen (N) as a dopant and/or N-containing functional groups to enhance...
Graphene has been heralded as a promising electrode material for high energy and power density elect...
Graphene-based electrodes have been widely tested and used in electrochemical double layer capacitor...
Quantum capacitance of graphene plays a significant role for graphene's applications in electrochemi...
Low-energy density has long been the major limitation to the application of supercapacitors. Introdu...
The quantum capacitance from large area, 6- to 7-layered graphene, and chemically modified graphene,...