Nano-sized manganese oxide (MnO) was incorporated homogeneously in templated mesoporous carbon to prepare MnO-carbon nanocomposites, which were used as supercapacitor electrodes. Cyclic voltammetry was employed to investigate the electrochemical properties of the composite materials in an aqueous electrolyte under different scan rates. Results showed that templated mesoporous carbon with layered graphene domains holds a great promise for high-rate supercapacitor applications. With a well-controlled homogeneous insertion of MnO nanoparticles in the carbon matrix, the electrochemical performance of the composite material was significantly improved because of the contribution of pseudocapacitance of the metal oxide. A specific capacitance of o...
A simplified sol-gel method that can be scaled up for large-scale production was adopted for the pre...
Manganese dioxide (MnO) clusters were directly grown on different carbons, including reduced graphen...
A composite materials carbon nanosheets supported MnO2 nanorods exhibiting high capacitance performa...
MnO2/C composites electrodes are synthesized by two different methods: chemical reduction and electr...
10.1016/j.micromeso.2009.04.008Microporous and Mesoporous Materials1231-3260-267MIMM
Herein, we present an efficient and simple method to develop a 3D-Carbon /MnO2 (C/MnO2) composite ac...
We have fabricated a symmetric electrochemical capacitor with high energy and power densities based ...
The supercapacitor is a new type of energy storage element. Compared with traditional batteries and ...
In this work, we have discussed the low-cost metal oxide, and commercially available sugar derived c...
Nitrogen-doped composites have the potential to achieve well electrochemical performance by enabling...
The synthesis and characterization of MnCo2O4 nanoflake/graphene nanoplatelets composite is reported...
Nitrogen-doped composites have the potential to achieve well electrochemical performance by enabling...
The synthesis and characterization of MnCo2O4 nanoflake/graphene nanoplatelets composite is reported...
In this study, electrochemical materials, namely MnO2, reduced graphene oxide (rGO), porous carbon n...
The increasing demands on energy have led to environmental issues and the depletion of fossil fuels....
A simplified sol-gel method that can be scaled up for large-scale production was adopted for the pre...
Manganese dioxide (MnO) clusters were directly grown on different carbons, including reduced graphen...
A composite materials carbon nanosheets supported MnO2 nanorods exhibiting high capacitance performa...
MnO2/C composites electrodes are synthesized by two different methods: chemical reduction and electr...
10.1016/j.micromeso.2009.04.008Microporous and Mesoporous Materials1231-3260-267MIMM
Herein, we present an efficient and simple method to develop a 3D-Carbon /MnO2 (C/MnO2) composite ac...
We have fabricated a symmetric electrochemical capacitor with high energy and power densities based ...
The supercapacitor is a new type of energy storage element. Compared with traditional batteries and ...
In this work, we have discussed the low-cost metal oxide, and commercially available sugar derived c...
Nitrogen-doped composites have the potential to achieve well electrochemical performance by enabling...
The synthesis and characterization of MnCo2O4 nanoflake/graphene nanoplatelets composite is reported...
Nitrogen-doped composites have the potential to achieve well electrochemical performance by enabling...
The synthesis and characterization of MnCo2O4 nanoflake/graphene nanoplatelets composite is reported...
In this study, electrochemical materials, namely MnO2, reduced graphene oxide (rGO), porous carbon n...
The increasing demands on energy have led to environmental issues and the depletion of fossil fuels....
A simplified sol-gel method that can be scaled up for large-scale production was adopted for the pre...
Manganese dioxide (MnO) clusters were directly grown on different carbons, including reduced graphen...
A composite materials carbon nanosheets supported MnO2 nanorods exhibiting high capacitance performa...