MnO2 is a promising electrode material for supercapacitors, because it exhibits high theoretical specific capacitance (1380 F g(-1)) for electrical charge while also being inexpensive and environmentally benign. However, owing to its low electrical conductivity, the intrinsic pseudocapacity of is In MnO2 not fully utilized. this work, hierarchically structured spheres composed of MnO2 nanoplatelets and carbon coated cobalt nanobeads (MnO2-NPs@Co/C) are chosen as electrode materials for supercapacitor. With a Co/C mass loading of 19 wt %, the electrical conductivity of the hybrid is 122-fold larger than that of pristine MnO2, showing a specific capacitance of the constituent MnO2 as high as 1240 F g(-1), being close to the theoretical value....
High-capacity energy storage in electrochemical capacitors may benefit from the combination of elect...
Three kinds of hierarchical porous nanostructures assembled from ultrathin MnO2 nanoflakes with diff...
Ultrathin mesoporous nanoflakes of α-MnO2 films were easily prepared by mixing potassium permanganat...
MnO2 is a promising electrode material for supercapacitors, because it exhibits high theoretical spe...
A novel hierarchical MnO2/carbon strip (MnO2/C) microsphere is synthesized via galvanostatic charge-...
The practical performance of MnO2 as a capacitor material is limited mainly by its poor electronic c...
A facile strategy is developed for the synthesis of MnO2 nanoflakes/hierarchical porous carbon spher...
Manganese oxides are promising pseudocapacitve materials for achieving both high power and energy de...
Manganese oxides are promising pseudocapacitve materials for achieving both high power and energy de...
Manganese oxides are promising pseudocapacitve materials for achieving both high power and energy de...
A novel hierarchical MnO<sub>2</sub>/carbon strip (MnO<sub>2</sub>/C) microsphere is synthesized via...
Herein, we present an efficient and simple method to develop a 3D-Carbon /MnO2 (C/MnO2) composite ac...
High-capacity energy storage in electrochemical capacitors may benefit from the combination of elect...
Designing and fabricating the electrochemical active materials with outstanding electrochemical perf...
High-capacity energy storage in electrochemical capacitors may benefit from the combination of elect...
High-capacity energy storage in electrochemical capacitors may benefit from the combination of elect...
Three kinds of hierarchical porous nanostructures assembled from ultrathin MnO2 nanoflakes with diff...
Ultrathin mesoporous nanoflakes of α-MnO2 films were easily prepared by mixing potassium permanganat...
MnO2 is a promising electrode material for supercapacitors, because it exhibits high theoretical spe...
A novel hierarchical MnO2/carbon strip (MnO2/C) microsphere is synthesized via galvanostatic charge-...
The practical performance of MnO2 as a capacitor material is limited mainly by its poor electronic c...
A facile strategy is developed for the synthesis of MnO2 nanoflakes/hierarchical porous carbon spher...
Manganese oxides are promising pseudocapacitve materials for achieving both high power and energy de...
Manganese oxides are promising pseudocapacitve materials for achieving both high power and energy de...
Manganese oxides are promising pseudocapacitve materials for achieving both high power and energy de...
A novel hierarchical MnO<sub>2</sub>/carbon strip (MnO<sub>2</sub>/C) microsphere is synthesized via...
Herein, we present an efficient and simple method to develop a 3D-Carbon /MnO2 (C/MnO2) composite ac...
High-capacity energy storage in electrochemical capacitors may benefit from the combination of elect...
Designing and fabricating the electrochemical active materials with outstanding electrochemical perf...
High-capacity energy storage in electrochemical capacitors may benefit from the combination of elect...
High-capacity energy storage in electrochemical capacitors may benefit from the combination of elect...
Three kinds of hierarchical porous nanostructures assembled from ultrathin MnO2 nanoflakes with diff...
Ultrathin mesoporous nanoflakes of α-MnO2 films were easily prepared by mixing potassium permanganat...